#Airborne Telemetry Market Trends
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Platform Segments: Trends in Ground-Based Telemetry Systems
The Aerospace and Defense Telemetry Market is integral to modern aerospace and defense operations, involving the collection and transmission of critical data such as position, speed, altitude, and system performance from various platforms like aircraft, missiles, satellites, and ground stations to monitoring and control facilities. This data is crucial for mission planning, execution, and analysis. As the complexity and sophistication of aerospace and defense operations increase, the demand for advanced telemetry solutions grows. These systems ensure real-time data transmission, enhancing the efficiency and safety of missions. The Aerospace and Defense Telemetry Industry is projected to grow from USD 1.4 Billion in 2022 to USD 2.0 Billion by 2027, at a CAGR of 6.9%.
Market Size and Growth Factors
The Aerospace and Defense Telemetry market is expanding significantly due to several growth factors:
Technological Advancements
The miniaturization of sensors, enhanced data processing capabilities, and robust communication systems drive the adoption of advanced telemetry solutions. These technological innovations enable precise, reliable, and efficient data collection and transmission, essential for the success of aerospace and defense missions.
Increasing Defense Budgets
Many countries are increasing their defense budgets to enhance their military capabilities. This increased funding leads to higher investments in sophisticated telemetry systems, crucial for modernizing defense infrastructure and improving operational effectiveness.
Rising Use of UAVs and Satellites
The growing deployment of unmanned aerial vehicles (UAVs) and satellites for surveillance, reconnaissance, and communication boosts the demand for advanced telemetry systems. These applications require precise and real-time data transmission that telemetry systems provide.
Modernization of Military Equipment
Nations are continuously upgrading their military equipment to stay ahead in defense technology. This modernization includes integrating advanced telemetry systems to enhance performance, interoperability, and reliability.
Expansion of Space Exploration
Increased space exploration activities by government agencies and private companies are driving the demand for robust telemetry solutions. These missions depend on telemetry for tracking and monitoring spacecraft, ensuring mission success and safety.
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Regulatory Mandates
Strict regulatory requirements for aerospace and defense operations necessitate the adoption of advanced telemetry systems. Compliance with these regulations ensures safety, reliability, and efficiency in defense operations.
Enhanced Cybersecurity Needs
The critical nature of defense data requires secure transmission methods. The growing focus on cybersecurity is driving the development of telemetry systems with advanced encryption and security features to protect sensitive information from cyber threats.
Market Trends and Dynamics
The market is experiencing significant growth across various segments, including platforms, applications, technologies, and components. Each segment presents unique opportunities and challenges.
Platform Segments
Ground: Ground-based telemetry systems are essential for monitoring and controlling aerospace and defense operations. These systems support ground stations, launch facilities, and control centers.
Airborne: Airborne telemetry systems are used in aircraft for real-time data collection and transmission. Increasing investments in modernizing air fleets and developing new aircraft are boosting this segment.
Marine: Telemetry systems for marine applications are crucial for naval operations, including submarines and surface ships. The expansion of naval capabilities drives growth in the marine segment.
Space: Space-based telemetry systems are critical for satellite operations, space exploration missions, and communication between space assets and ground stations. The surge in commercial space ventures and governmental space exploration initiatives is propelling this segment.
Weapons: Telemetry for weapons systems, including missiles and guided munitions, is vital for tracking, control, and performance analysis. The development of advanced weaponry enhances the growth of this segment.
UAVs (Unmanned Aerial Vehicles): UAV telemetry systems are rapidly expanding due to their increasing use in surveillance, reconnaissance, and combat operations. The demand for real-time data transmission in UAV operations drives this segment's growth.
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Application Segments
Avionics: Telemetry in avionics ensures the proper functioning of aircraft systems by providing real-time data on various parameters. Advancements in avionics technology contribute to this segment's growth.
Air Vehicle Test: Telemetry systems are crucial for testing air vehicles, including performance evaluation and system validation. The continuous development and testing of new air vehicles are driving this segment.
Flight Test Instrumentation: Used during flight tests to gather data on aircraft performance, flight test instrumentation telemetry is essential for safety and design improvements, boosting growth in this segment.
Distributed Data Acquisition System: These systems collect data from various sensors distributed across platforms, enabling comprehensive monitoring and analysis. The increasing complexity of aerospace systems fuels growth in this segment.
Flight Termination System: Telemetry in flight termination systems is crucial for ensuring the safe termination of flights during tests or operations. Regulatory requirements and safety concerns drive this segment's growth.
Technology Segments
Wired Telemetry: Traditional wired telemetry systems are still in demand due to their reliability and accuracy in specific applications. The need for stable and interference-free data transmission supports this segment.
Wireless Telemetry: Wireless telemetry is rapidly growing due to advancements in wireless communication technologies and the need for flexible and mobile telemetry solutions. The rise of IoT in aerospace and defense further boosts this segment.
Component Segments
Receivers: Telemetry receivers are essential for capturing transmitted data. The development of advanced, high-sensitivity receivers contributes to this segment's growth.
Transmitters: Transmitters send data from sensors to receivers. The demand for high-power and miniaturized transmitters drives growth in this component segment.
Antennas: Antennas are critical for effective data transmission and reception. Innovations in antenna design and technology, including phased array and compact antennas, enhance this segment's growth.
Processors: Processors in telemetry systems handle data processing and analysis. The increasing complexity and volume of data in modern telemetry applications necessitate advanced processors, driving growth in this segment.
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Regional Growth
The Aerospace and Defense Telemetry market is expanding significantly across various regions, including North America, Europe, and Asia Pacific.
North America
North America, particularly the United States, leads in aerospace and defense telemetry technology. The region's focus on innovation and advanced R&D drives the market. The U.S. has one of the highest defense budgets globally, fueling investments in sophisticated telemetry systems. Robust space exploration activities, led by NASA and private companies like SpaceX, significantly contribute to the growth of the space-based telemetry segment. Major aerospace and defense companies such as Lockheed Martin, Boeing, and Raytheon Technologies are headquartered in North America, driving demand for advanced telemetry systems.
Europe
European countries are enhancing their military capabilities with higher defense budgets, boosting the demand for advanced telemetry systems. Europe has numerous collaborative defense initiatives, such as European Space Agency (ESA) projects and joint military programs like the Eurofighter Typhoon. These collaborations necessitate sophisticated telemetry systems for seamless integration and operation. Europe is also expanding its UAV capabilities and space exploration efforts. Investments in UAV technology and new space missions by countries like France, Germany, and the UK drive the need for reliable telemetry systems.
Asia Pacific
Countries like China, India, and Japan are significantly increasing their defense spending. This modernization of military equipment and enhancement of surveillance capabilities drive the demand for telemetry systems. The Asia Pacific region is witnessing rapid advancements in aerospace and defense technologies. Innovations in telemetry, supported by government R&D, boost market growth. China and India are expanding their space programs with ambitious satellite launches and lunar missions. These initiatives require robust telemetry systems for successful missions. The UAV market in Asia Pacific is expanding due to increasing applications in defense, agriculture, and surveillance.
Emerging Industry Trends
Several emerging trends are shaping the Aerospace and Defense Telemetry market:
Miniaturization of Antennas: Research and development efforts are focused on reducing the size and weight of antennas while increasing their power. Flexible hybrid electronics (FHE) technology is leading to the development of integrated antennas that are lightweight and can conform to various surfaces while maintaining operational integrity.
Integration of AI and Machine Learning: The use of artificial intelligence (AI) and machine learning (ML) in telemetry systems enhances data analysis, predictive maintenance, and autonomous decision-making, improving operational efficiency and mission success.
5G and Advanced Communication Technologies: The deployment of 5G and other advanced communication technologies enables faster, more reliable, and higher-capacity data transmission, crucial for real-time monitoring and control of aerospace and defense assets.
Development of Smart and Connected Defense Systems: The trend towards smart and connected defense systems, including the Internet of Military Things (IoMT), requires advanced telemetry for real-time data, enhanced situational awareness, and improved decision-making capabilities.
Market Opportunities
The market presents several opportunities for growth:
Increased Space Exploration and Commercial Space Ventures: The growing interest in space exploration and the rise of commercial space ventures create substantial demand for advanced telemetry systems.
Expansion of Unmanned Systems: The increasing use of unmanned systems, such as drones and unmanned ground vehicles (UGVs), in defense and surveillance applications presents new opportunities.
Cybersecurity Enhancements: As cybersecurity becomes a top priority for defense operations, there is a growing need for telemetry systems with advanced security features.
International Collaborations and Defense Alliances: International collaborations and defense alliances drive the need for interoperable telemetry systems, creating opportunities for companies to develop solutions that can seamlessly integrate with different nations' defense technologies and protocols.
Sustainability and Green Aerospace Initiatives: The push towards sustainable and green aerospace initiatives is leading to the development of energy-efficient and eco-friendly telemetry systems.
Aerospace and Defense Telemetry Market Company Shares
The Aerospace and Defense Telemetry Companies are dominated by globally established players such as L3harris Technologies (US), Honeywell International Inc (US), General Dynamics Corporation (US), Lockheed Martin (US), Maxar Technologies (US)
The Aerospace and Defense Telemetry market is experiencing significant growth driven by technological advancements, increasing defense budgets, rising use of UAVs and satellites, modernization of military equipment, expansion of space exploration, regulatory mandates, and enhanced cybersecurity needs. The market's diverse segments, including platforms, applications, technologies, and components, present unique opportunities and challenges. Regional growth in North America, Europe, and Asia Pacific highlights the dynamic nature of the market. Emerging trends and opportunities, such as miniaturization of antennas, integration of AI and ML, deployment of 5G, and development of smart defense systems, are shaping the future of the Aerospace and Defense Telemetry market. As the industry continues to evolve, the demand for advanced telemetry solutions will remain crucial for ensuring the efficiency, safety, and success of aerospace and defense operations.
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Airborne ISR Market Analysis
Airborne ISR Market by Solution (Systems, Software, Services), Platform (Military Aircraft, Military Helicopters, Unmanned Systems), End User (Defense, Homeland Security), Application, and Region (North America, Europe, Asia-Pacific, Middle East and Africa and South America)
Market Overview
The Airborne ISR market size is projected to reach a CAGR of 5.4% from 2021 to 2028.
Airborne ISR refers to Airborne Intelligence, Surveillance and Reconnaissance. An ISR is primarily used to detect potential risks, and help the decision makers to access the change and take decisions according. Airborne ISR serves the described function in fir air-based risks. It not just operates but also evaluate and manages the processing systems. It is widely used for militarily purpose.
With a requirement for modern warfare system along with the integration of AI and IoT in the sector and the increased need for better missile detection systems are some of the factors that have supported long-term expansion for Airborne ISR Market.
COVID-19 had a negative effect on the market, due to the supply chain disruption and logistic disruption.
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Regional Analysis
North America is the most rapidly growing market and offers a huge opportunity for the industry, whose growth is driven by the increased R&D activities along with the surged demand for precision and accurate ISR system.
Competitive Landscape
Key Players
BAE Systems plc
L-3 Technologies Inc.
Lockheed Martin Corporation
Northrop Grumman Corporation
UTC Aerospace Systems
The Boeing Co.
General Dynamics Corporation
Raytheon Company
Rockwell Collins Inc.
Thales S.A.
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Recent Developments
In July 2021, BAE Systems was awarded a contract from the US Army for the delivery of the next-generation 2-Color Advanced Warning System (2CAWS).
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Increase your understanding of the market for identifying the best and suitable strategies and decisions on the basis of sales or revenue fluctuations in terms of volume and value, distribution chain analysis, market trends and factors
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Qualitative and quantitative data utilization to discover arrays of future growth from the market trends of leaders to market visionaries and then recognize the significant areas to compete in the future
In-depth analysis of the changing trends of the market by visualizing the historic and forecast year growth patterns
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Report Scope
Airborne ISR Market is segmented into Solution, Platform, End User, Application and region.
On the basis of Solution
Systems
Software
Services
On the basis of Platform
Military Aircraft
Military Helicopters
Unmanned Systems
On the basis of End-User
Defense
Homeland Security
On the basis of Region
Asia Pacific
North America
Europe
South America
Middle East & Africa
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Which particular market segments should industry players focus on in order to take advantage of the most recent technical advancements?
What is the anticipated growth rate for the market economy globally?
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Military Antenna Market Trends, Share, Scope and Forecast by 2030
The market study covers several perceptions of the market, with market dynamics, value chain, pricing analysis, competition analysis, regional and segmental growth comparison, and macro-economic and industry growth analysis, alongside segment-level projections in a comprehensive manner. Increasing technological advancements, growing need for modern battle equipment, rising demand for innovative communication systems, increasing security concern, modernization of the military equipment, rise in terrorist activities, attack prone border, increasing demand for high - frequency military aircraft are few of the factors driving the market. The marketS are combined with advanced applications like multifunctional radars, 3D drones, etc. which provide better surveillance for accurate target tracking. However, the high cost involved in the development of the device is one of the main challenges for the development of the market. The global market is segregated on the basis of Application as Electronic Warfare, Navigation, Telemetry, Communication, Surveillance, and SATCOM. Based on the Frequency band the market is segmented in Ultra-High Frequency, Super High Frequency, Extremely High Frequency, High Frequency, and Very High Frequency. Based on Platform the market is segmented in Ground, Marine, and Airborne. Based on Type, the market is segmented in Loop Antennas, Aperture Antennas, Travelling Wave Antennas, Dipole Antennas, Monopole Antennas, and Array Antennas.
The global market report provides geographical analysis covering regions, such as North America, Europe, Asia-Pacific, and the Rest of the World. The market for each region is further segmented for major countries including the U.S., Canada, Germany, the U.K., France, Italy, China, India, Japan, Brazil, South Africa, and others.
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The global Military Antenna market has been segmented as below:
By Application
Electronic Warfare
Navigation
Telemetry
Communication
Surveillance
SATCOM
By Frequency band
Ultra-High Frequency
Super High Frequency
Extremely High Frequency
High Frequency
Very High Frequency
By Platform
Ground
Handheld Antennas
Body Worn Antennas
Unmanned Ground Vehicle (UGV) Antennas
Base Station Antennas
Vehicle Antennas
Manpack Antennas
Marine
Shipboard Antennas
Submarine Antennas
Unmanned Marine Vehicle (UMV) Antennas
Airborne
Aircraft Antennas
Unmanned Aerial Vehicle (UAV) Antennas
Missile Antennas
By Type
Loop Antennas
Aperture Antennas
Travelling Wave Antennas
Dipole Antennas
Monopole Antennas
Array Antennas
By Region
North America
Europe
Asia-Pacific
Rest of the World
By Company
Harris Corporation
Cobham plc
Comrod Communications AS
Terma A/S
RAMI
Mitsubishi Electric Corporation Maxar
Technologies Norsat International Inc.
Kymeta Corporation
Viasat Inc.
Ruag International Holding Ltd.
Lockheed Martin Corporation
Aselsan A.S.
Ball Corporation
Nd Satcom
Thales Group
Gilat Satellite Networks
Micro-Ant
Sat-Lite Technologies
Datapath, Inc.
Hanwha-Phasor
Viking Satcom Ltd.
Honeywell International Inc.
General Dynamics Corporation
The report covers the below scope:
Global market sizes from 2019 to 2025, along with CAGR for 2020-2025
Market size comparison for 2020 vs 2025, with actual data for 2020, estimates for 2021 and forecast from 2021 to 2025
Global market trends, covering a comprehensive range of consumer trends & manufacturer trends
Value chain analysis covering participants from raw material suppliers to the downstream buyer in the global market
Major market opportunities and challenges in forecast timeframe to be focused
Competitive landscape with analysis on competition pattern, portfolio comparisons, development trends and strategic management
Comprehensive company profiles of the key industry players
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Satellite Communication Equipments Market to Observe Strong Growth to Generate Massive Revenue in Coming Years
Advance Market Analytics released a new market study on Global Satellite Communication Equipments Market Research report which presents a complete assessment of the Market and contains a future trend, current growth factors, attentive opinions, facts, and industry validated market data. The research study provides estimates for Global Satellite Communication Equipments Forecast till 2027*.
A satellite is fundamentally an independent interchanges framework with the capacity to get signals from Earth and to retransmit those signals back with the utilization of a transponder, an incorporated collector and transmitter of radio signs. Satellite communication equipment is utilized for the transmission, molding, and gathering of satellite signals in overall media communications. General particulars incorporate item type, mounting style, and connector type or interface. Impedance is likewise a significant boundary to consider. As far as execution, satellite interchanges gear varies as far as recurrence, working voltage, yield force, and gain, return loss, working temperature, and working Humidity. Items with provisions like a controller, an incorporated warmth sink, and an inserted power supply are normally accessible.
Key Players included in the Research Coverage of Satellite Communication Equipments Market are:
General Dynamics Corporation (United States)
Cobham Plc (United Kingdom)
L3 Technologies (United States)
Viasat (United States)
Harris Corporation (United States)
Iridium Communications Inc. (United States)
Gilat Satellite Networks (Israel)
ASELSAN A.S. (Turkey)
Intellian Technologies, INC (South Korea)
Hughes Network Systems LLC (United States)
Campbell Scientific Inc. (United States)
What's Trending in Market: Increase access to satellite technology by private players
Growing demand for wide area network communication, cellular backhaul, Internet trucking, and television broadcasting
Challenges: Increase in research activities to develop miniature systems that can perform efficiently in complex environments
Opportunities: Increase in use of satellite antennas in automobiles in the developing countries
Developing technologically advanced equipment for various applications, including telecommunication, automotive, and Earth observation
Market Growth Drivers: Increasing need for uninterrupted communication in various industries
A growing fleet of autonomous and connected vehicles
The Global Satellite Communication Equipments Market segments and Market Data Break Down by Type (SATCOM Transmitter/Transponder, SATCOM Antenna, SATCOM Transceiver, SATCOM Receiver, SATCOM Modem/Router), Application (Portable SATCOM Equipment, Land Mobile SATCOM Equipment, Maritime SATCOM Equipment, Airborne SATCOM Equipment, Land Fixed SATCOM Equipment), By Technology (SATCOM VSAT, SATCOM Telemetry, SATCOM AIS, SATCOM-on-the-Move, SATCOM-on-the-Pause) To comprehend Global Satellite Communication Equipments market dynamics in the world mainly, the worldwide Satellite Communication Equipments market is analyzed across major global regions. AMA also provides customized specific regional and country-level reports for the following areas. • North America: United States, Canada, and Mexico. • South & Central America: Argentina, Chile, Colombia and Brazil. • Middle East & Africa: Saudi Arabia, United Arab Emirates, Israel, Turkey, Egypt and South Africa. • Europe: United Kingdom, France, Italy, Germany, Spain, Belgium, Netherlands and Russia. • Asia-Pacific: India, China, Japan, South Korea, Indonesia, Malaysia, Singapore, and Australia. Presented By
AMA Research & Media LLP
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Military Antenna market Size, 2020 Industry Share and Global Demand | 2027 Forecast by Fortune Business Insights™
The global military antenna market size is projected to reach USD 5.78 billion by the end of 2027. The rising military budget allocations will create several growth opportunities for the companies operating in the market. According to a report published by Fortune Business Insights, titled “Military Antenna Market Size, Share & Industry Analysis, By Frequency (High, Ultra-High, Super High, and Extremely High Frequency), By Type (Dipole, Aperture, Travelling Wave, Loop, and Array Antenna), By Platform (Airborne, Marine, and Ground), By Application (Communication, Surveillance, SATCOM, Electronic Warfare, and Telemetry), and Regional Forecast, 2020-2027,” the market was worth USD 4.89 billion in 2019 and will exhibit a CAGR of 8.61% during the forecast period, 2020-2027.
Coronavirus Outbreak has Compelled Several Countries to Prioritize Healthcare Budgets over Defense
The recent coronavirus outbreak has created a sense of panic across the world. Due to the rapid spread of the disease, governments across several countries have decided to allocate more budgets to the healthcare sector than the defense sector. The constant research and development activities to minimize the spread of the disease as well as development efficient treatment options, has influenced this decision. As a result, the reductions in budget allocations for military and defense applications will have an adverse effect on the growth of the military antenna market in the coming years.
Military antennas are used in several communication applications in the military and defense sector. A military antenna system is used to convert radio frequency waves into alternating current and vice versa for receiving and transmission process. The massive investments in the development and deployment of efficient military antennas are consequential to the degree of sensitivity and risks involved with the communication in this sector. Accounting to this, the military organizations of several countries across the world are looking to collaborate with tech-companies. It is observed that company mergers and collaborations are an increasing trend among major companies across the world. The increasing number of company collaborations will subsequently affect the growth of the overall market in the coming years. Additionally, the rising awareness regarding the importance of integrating high-quality products and devices in military applications will bode well for market growth.
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Increasing Number of Company Mergers and Acquisitions will Aid Growth
The report encompasses several factors that have contributed to the growth of the market in recent years. Among all factors, the increasing number of company mergers and acquisitions has made the highest impact on the growth of the overall market in recent years. Accounting to the massive investments in technological intervention by several companies, defense organizations are looking to collaborate with these tech companies. In May 2020, Raytheon Technologies announced that it has bagged a contract from the US Navy for development and assembly of planar antennas. Through this contract, the company will assemble planar array antennas as well as develop spare parts for the same. The company will also provide assistance for engineering related issues; a factor that will come under the repair and maintenance part. This collaboration will not just help the company generate huge revenue, but will also have a direct impact on the growth of the global market.
North America Likely to Emerge Dominant; Increasing Defense Expenditure will Provide Impetus to Market Growth
The report analyses the latest market trends across five major regions, including North America, Latin America, Europe, Asia Pacific, and the Middle East and Africa. Among all regions, the market in North America is projected to emerge dominant in the coming years. The rising defense budget allocations, especially in the United States, have made a positive impact on the growth of the regional market. Additionally, the presence of several large scale tech-companies involved in manufacturing of military antennas will constitute an increase in the overall market size. As of 2019, the market in North America was worth USD 1.84 billion and this value will rise considerably in the coming years. The market in Asia Pacific will derive growth from the rising defense spending by leading countries such as India and China.
List of companies profiled in the report:
Antcom Corporation (California, the U.S.)
Cobham PLC (Wimborne Minster, The U.K)
Comrod Communication AS (Stavanger, Norway)
Eylex Pty Ltd. (New South Wales, Australia)
Hascall-Denke (Florida, The U.S.)
L3Harris Technologies Ltd. (Florida, The U.S.)
Lockheed Martin Corporation (Maryland, The U.S.)
MTI Wireless Edge Ltd. (Israel)
Raytheon Technologies (Connecticut, The U.S.)
Rohde & Schwarz GmbH & Co KG (Munich, Germany)
Terma A/S (Aarhus Municipality, Denmark)
Other Players
This Report Answers the Following Questions:
What are the plastic compounding market trends?
How many growth drivers and barriers will the market possess?
Which organizations are set to remain on top in the market?
What are the strategies adopted by industry giants to strengthen their position?
Which segment is set to dominate the market during the forthcoming years?
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Military Antenna Market report Focus on:
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Potential Market opportunities
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Regular report updates
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Tracks the developments, such as new product launches, agreements, mergers and acquisitions, geographical expansions, and joint ventures.
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Identifies all the possible segments present in the market to aid organizations in strategic business planning.
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Which region or sub-segment is expected to drive the market in the forecast period?
What Factors are estimated to drive and restrain the market growth
Industry Developments:
May 2020 –Isotropic Systems announced that it has bagged a contract for evaluation & development of antenna by the U.S. Defense Innovation Unit. Through this contract, the company will focus on the delivery of low-profile, affordable, high performance, and customizable antenna to support multiple links over multiple bands of satellite capacity, including S, C, Ka, Ku, X, and Q-band connectivity.
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About Us:
Fortune Business Insights™ offers expert corporate analysis and accurate data, helping organizations of all sizes make timely decisions. We tailor innovative solutions for our clients, assisting them to address challenges distinct to their businesses. Our goal is to empower our clients with holistic market intelligence, giving a granular overview of the market they are operating in.
Our reports contain a unique mix of tangible insights and qualitative analysis to help companies achieve sustainable growth. Our team of experienced analysts and consultants use industry-leading research tools and techniques to compile comprehensive market studies, interspersed with relevant data.
At Fortune Business Insights™, we aim at highlighting the most lucrative growth opportunities for our clients. We, therefore, offer recommendations, making it easier for them to navigate through technological and market-related changes. Our consulting services are designed to help organizations identify hidden opportunities and understand prevailing competitive challenges.
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Market Definition: Global Airborne Telemetry Market
Telemetry is a term for innovations that obliges to gather data as estimations or measurable information, and forwards it to IT frameworks in a remote area. This term can be utilized as a part of reference to a wide range of frameworks. For example, remote frameworks utilizing radio, ultrasonic or infrared advances, or a few kinds of frameworks working over phone or PC systems. Others may utilize distinctive systems like SMS messaging. In the software world, telemetry offers bits of knowledge to end clients for identification of bugs and issues, for better insights into execution without the need to request criticism from clients. In a general sense, telemetry works through sensors at the remote source which measures physical, (for example, precipitation, weight or temperature) or electrical, (for example, current or voltage) information. This changed to electrical voltages that are joined with timing data. It shaped data stream which is transmitted over a remote medium, wired or a mix of both. At the remote collector, the stream is disaggregated and the main data appeared or took care of in perspective of the customer’s particulars
The airborne telemetry is the utilization of the computerized correspondence forms for the estimation, gathering information from blocked off or remote zones and transmitting it to hardware where the information can be observed. The airborne telemetry advertisement helps the countries to catch the greater part of the information to protect the country from deplorable assaults or regular catastrophes. The uses of the telemetry in the field of metrology, route, correspondence, military insight, flight testing, rocketry, space science, transportation, oil and gas industry, therapeutic and social insurance, asset dispersion, agribusiness and vitality observing are boosting its request in the worldwide market. In airborne telemetry system yield qualities must be changed, sifted, or adjusted for similarity with the following phase of the framework to acquire data sensor. The outright connection between the yield and the genuine property estimation may change with time, elevation, weight, temperature, etc. In this way, flag conditioners likewise consolidate adjustment highlights to help in characterizing the connections.
Market Drivers and Restraints:
Increase in research & development of modern airborne telemetry system.
Growing adoption of cloud computing in telemetry along with artificial intelligence.
Increase in demand for unmanned aircraft systems.
Huge investment costs.
Market Segmentation: Global Airborne Telemetry Market
The global airborne telemetry market is based on technology, component, platform, sensor and geographical segments.
Based on technology the market is segmented into wireless telemetry and wired telemetry.
Based on component the market is segmented into receiver, transmitter and antenna.
Based on platform the market is segmented into fixed wing, rotary wing, unmanned aerial vehicle and parachute.
Based on sensor the market is segmented into GPS, load cell, torque, weather prediction and others.
Based on geography, the airborne telemetry market report covers data points for 28 countries across multiple geographies such as North America, South America, Europe, Asia-Pacific and Middle East & Africa. Some of the major countries covered in this report are U.S., Canada, Germany, France, U.K., Netherlands, Switzerland, Turkey, Russia, China, India, South Korea, Japan, Australia, Singapore, Saudi Arabia, South Africa, and Brazil among others.
Competitive Analysis: Global Airborne Telemetry Market
The global airborne telemetry market is fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market in order to sustain in long run. The report includes market shares of airborne telemetry market for global, Europe, North America, Asia Pacific and South America.
Key Players: Global Airborne Telemetry Market
The renowned players in airborne telemetry market are BAE Systems, Rockwell Collins, Honeywell International, L-3 Communications Holdings, Cobham PLC, ORBIT Technologies, Zodiac Aerospace, Curtiss-Wright Corporation, Dassault Aviation, Finmeccanica, Kongsberg Gruppen, Airtech, Inc., and others
Research Methodology: Global Airborne Telemetry Market
Data collection and base year analysis is done using data collection modules with large sample sizes. The market data is analyzed and forecasted using market statistical and coherent models. Also market share analysis and key trend analysis are the major success factors in the market report. To know more please Request an Analyst Call or can drop down your inquiry.
The key research methodology used by DBMR Research team is data triangulation which involves data mining, analysis of the impact of data variables on the market, and primary (industry expert) validation. Apart from this, other data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Company Market Share Analysis, Standards of Measurement, Top to Bottom Analysis and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.
#Global Airborne Telemetry Market#Airborne Telemetry Market#Airborne Telemetry#Airborne Telemetry Market Size#Airborne Telemetry Market Share#Airborne Telemetry Market Trends#Airborne Telemetry Market Forecast#Airborne Telemetry Market Research Report#Airborne Telemetry Market Outlook
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Global Satellite Communication (SATCOM) Market Research Report 2021-2027
Bharat Book Bureau Provides the Trending Market Research Report on “Satellite Communication (SATCOM) Market Research Report: Information by Product (SATCOM Transponder, SATCOM Transceiver, SATCOM Antenna, SATCOM Modem, and SATCOM Receiver), Technology (SATCOM VSAT, SATCOM Telemetry, SATCOM Automatic Identification System (AIS), SATCOM-On-the-Move, and SATCOM-On-the-Pause), End Use (Commercial and Government & Defense), Vertical (Portable SATCOM Equipment, Land Mobile SATCOM Equipment, Maritime SATCOM Equipment, Airborne SATCOM Equipment, and Land Fixed SATCOM Equipment), and Region (North America, Europe, Asia-Pacific, Middle East & Africa, and Latin America) - Forecast till 2027”under Defence Market Research Reports Category. The report offers a collection of superior market research, market analysis, competitive intelligence and Market reports.
The Satellite Communication (SATCOM) Market is anticipated to exhibit a significant CAGR of 8.44% during the forecast period of 2021 and 2027. In satellite communication, the data transfer takes place through satellites revolving around the world. It is commonly used for telecommunication applications. The global SATCOM market is attributed to the growing formation of small satellites, increasing need for high-speed Internet, increasing adoption of maritime VSAT, and rising requirement for small form factor SatCom solutions & persistent launches of military satellites.
The satellite communication market is anticipated to grow essentially in the coming years. This development can be credited to factors like the expanding arrangement of little satellites, developing interest for high-velocity Internet, rising reception of oceanic VSAT, and expanding interest for little structure factor SATCOM arrangements and successive dispatches of military satellites. The worldwide satellite communication market is described by the presence of a few global and local sellers. The satellite communication market is exceptionally cutthroat, with every one of the players attempting to acquire the most extreme market share. Regular changes in governance arrangements, high rivalry, and unofficial laws are the key factors that could confine the worldwide market development. The sellers contend dependent on cost, item quality, and dependability. Additionally, the increased spending in Defense also contributes to the market growth because of the several applications of SATCOM in the military. However, the exposure to cyber-attacks and lack of precision in government policies are expected to hamper the market growth during the review period.
Segment Overview The global satellite communication market has been classified into Product, Technology, and end-use.
Based on Product type the global market has been segregated into SATCOM Transponder, SATCOM Transceiver, SATCOM Antenna, SATCOM Modem, and SATCOM Receiver.
By Technology type the global SATCOM market has been divided into SATCOM VSAT, SATCOM Telemetry, SATCOM Automatic Identification System (AIS), SATCOM-On-the-Move, and SATCOM-On-the-Pause. The End-Use segment categorizes the global market into Commercial, Government & Defense, Vertical, Portable SATCOM Equipment, Land Mobile SATCOM Equipment, Maritime SATCOM Equipment, Airborne SATCOM Equipment, and Land Fixed SATCOM Equipment
Regional Analysis North America includes two significant nations, to be specific, the US and Canada. The presence of significant makers like General Dynamics Corporation, Honeywell International, Inc., and Qualcomm Technologies, Inc. is reinforcing the market development. Furthermore, SATCOM has enormous applications in the tactical field, and the US is the world's most elevated military high roller.
MRFR expects the APAC market to show the quickest development during the guessed period because of the great extent of seaborne exchange the area and expanding safeguard consumption. The district has seen the rise of numerous players in the territorial satellite communication market over the previous decade.
Major players The Key Companies listed in the global Satellite communication market are Inmarsat plc (UK), Honeywell International Inc. (US), L3Harris Technologies, Inc. (US), Indra Sistemas, S.A. (Spain), General Dynamics Mission Systems, Inc. (US), Cobham Plc (UK), Viasat Inc. (US), Iridium Satellite Communications Inc. (US), Qualcomm Technologies, Inc. (US), and Gilat Satellite Networks (Israel)
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Global Aviation Market
Global Aviation Market: Industry Perspective, COVID-19 Impact Analysis, Size, Share, Growth, Segment, Trends and Forecast, 2030
The Global Aviation Market size was valued at USD 169.72 billion in 2020 and it is expected to reach USD 337.0 billion by 2030, registering the CAGR of 7.10% during the forecast period. The defence and aerospace business is massive and intricate. It caters to both the military and commercial sectors. From commercial planes to jet fighters to single-prop private planes and traffic helicopters, from the space shuttle to mission control systems, from radar systems to cruise missile systems, from missiles and submarines to aircraft carriers, it designs, produces, and supports everything. Tanks, surveillance satellites, flight simulators, ammunition, commercial and private planes, communications satellites, consumer electronics, and innumerable minor parts, components, and subsystems are among the industry's diverse offerings.
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Market Dynamics and Factors:
The worldwide commercial space industry is expected to experience consistent investments in new and current space technology and services, largely from governments and venture capital. Currently, the commercial space market's earnings are largely derived from the production of earth observation and communications satellites, as well as the launch vehicles that send these payloads into orbit. In the case of commercial aviation, low fuel prices will make it less necessary for airlines to replace their present fleet with more fuel-efficient planes. According to earlier studies, replacement rates decreased to about 1% per year during periods of low oil prices. Low commodity prices are also expected to be undermining the finances of resource-based countries, slowing the development of passenger demand in such growing markets.
Market Segmentation:
On the basis of type, the aviation market is majorly segmented into airborne and ground. By application, the market is categorised into commercial, business & civil and military. By region, the aviation market is classified into North America, Europe, Asia Pacific, and RoW.
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Geographic Analysis:
With the strong expenditure in the military and space industries, North America dominates the aerospace and defence telemetry industry. During the projection period, however, the Middle East and Africa, as well as Asia-Pacific, are predicted to expand faster. Political tensions in the Gulf have compelled them to raise defence spending in order to modernise their weapons.
Saudi Arabia, Israel, the United Arab Emirates, and Qatar are all working to modernise their commercial and military aviation sectors.Unmanned aerial vehicles are also in high demand in the region. As a result of these changes, the need for telemetry systems in the region is anticipated to increase. If overall European defence spending is compared, it is shown that France, Germany, and the United Kingdom account for half of all European defence spending.
Spain and Italy are in a distant fourth and fifth place, with 15.3 percent of the total.On a per-soldier basis, there is a clear northwest-southeast split in military expenditure, with the United Kingdom clearly leading the way ahead of northern Europe and a cluster of France, Germany, and other western European nations. The countries of southern and eastern Europe lag behind.India, China, and Japan, among the Asia-emerging Pacific's economies, are investing heavily in upgrading their military forces. The modernisation plans are supported even more by these nations' increased defence spending, which has a favourable influence on the market's growth.
Competitive Analysis:
Key players in the aviation market are
Lee Aerospace,
Llamas Plastics,
IncGKN Aerospace,
PPG Industries,
Gulfstream Aerospace,
Textron,
Airbus,
Comac,
Boeing,
Hindustan Aeronautics Limited (HAL).
How will this Market Intelligence Report Benefit You?
The report offers statistical data in terms of value (US$) as well as Volume (units) till 2030.
Exclusive insight into the key trends affecting the Global Aviation industry, although key threats, opportunities and disruptive technologies that could shape the Global Aviation Market supply and demand.
The report tracks the leading market players that will shape and impact the Global Aviation Market most.
The data analysis present in the Global Aviation Market report is based on the combination of both primary and secondary resources.
The report helps you to understand the real effects of key market drivers or retainers on Global Aviation Market business.
The 2021 Annual Global Aviation Market offers:
100+ charts exploring and analysing the Global Aviation Market from critical angles including retail forecasts, consumer demand, production and more
15+ profiles of top producing states, with highlights of market conditions and retail trends
Regulatory outlook, best practices, and future considerations for manufacturers and industry players seeking to meet consumer demand
Benchmark wholesale prices, market position, plus prices for raw materials involved in Global Aviation Market type
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Integrated Avionics Solution Market Overview, Future Scope & Competitive Landscape
Integrated Avionics Solution Market by End User (OEM, Aftermarket), System (FMS, CNS, Health Monitoring, Electrical & Emergency and Software), Platform (Commercial, Military, Business Jets & General Aviation, Helicopters), and Region (North America, Europe, Asia-Pacific, Middle East and Africa and South America)
The Integrated Avionics Solution market size is projected to reach a CAGR of 5.6% from 2022 to 2028.
Integrated Avionics Solution is a type of computer networked avionics. Avionics basically deals with the electronics of an aircraft and an integrated system helps in the better coordination and also is capable of handling various other criticality levels. The IAS tends to establish the concept of integration architecture and software.
Expansion in the retro aircraft market is a factor that have supported long-term expansion for Integrated Avionics Solution Market.
COVID-19 had a negative effect on the market.
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Regional Analysis
North America is the most rapidly growing market and offers a huge opportunity for the industry, whose growth is driven by the growing demand for commercial aircraft and their increased use in defence.
Key Players
Safran
GE Aviation
UTC (Collins Aerospace)
Honeywell International
Thales
Curtiss-Wright
L3 Communications
Meggitt
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Recent Developments
In March 2019, the Aspire 200 which is a new communication system was developed by Honeywell.
Reasons to Acquire
Increase your understanding of the market for identifying the best and suitable strategies and decisions on the basis of sales or revenue fluctuations in terms of volume and value, distribution chain analysis, market trends and factors
Gain authentic and granular data access for Integrated Avionics Solution s Market so as to understand the trends and the factors involved behind changing market situations
Qualitative and quantitative data utilization to discover arrays of future growth from the market trends of leaders to market visionaries and then recognize the significant areas to compete in the future
In-depth analysis of the changing trends of the market by visualizing the historic and forecast year growth patterns
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Report Scope
Integrated Avionics Solution Market is segmented into End User, System, Platform and region.
On the basis of System
Hardware
Flight Management Systems
Communication Systems
Navigation Systems
Surveillance Systems
Electrical Systems
Emergency Systems
Mission & Tactical Systems
Inflight Entertainment Systems
Health Monitoring Systems
Collision Avoidance Systems
Weather Systems
Software
Safety-critical Airborne Software
Mission Flight Management Software
Flight Management Software
Aircraft Health Diagnostic Software
Training & Simulation Software
Others (avoidance re-routers and flight situational awareness solutions)
On the basis of End-User
OEM
Aftermarket
On the basis of Platform
Commercial Aviation
Military Aviation
Business Jets & General Aviation
Helicopters
On the basis of Region
Asia Pacific
North America
Europe
South America
Middle East & Africa
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satellite communication (SATCOM) Market Size, Trends, Growth and Regional Outlook and Demand Forecast To 2026
General Dynamics Corporation, an American aerospace and defense corporation received a contract from Navy to build the ground system for the Mobile User Objective System. The $732 million contract awarded by Navy can be an exponential factor in boosting the satellite communication (SATCOM) market growth during the forecast period owing to the Navy’s next generation narrowband satellite communications system, providing secure voice, video and data communications to military users all over the globe.
According to General Dynamics, just one MUOS satellite can provide four times the capacity of the entire legacy system. Furthermore, the vice president and general manager for General Dynamics’ space and intelligence systems, Manny Mora, said in a statement, “MUOS will provide our warfighters with the ability to communicate securely, anywhere, anytime, with voice clarity and data transmission speed similar to using a civilian cell phone, this capability delivers a whole new level of connectivity for troops in the field.” In addition, the growing seaborne trade across countries will spur opportunities for the market in the forthcoming years. Nonetheless, the rising focus on autonomous and connected ships by numerous nations will fuel demand for satellite communication, which, in turn, will aid the market.
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“Satellite Communication (SATCOM) Market Size, Share & Industry Analysis, By Component (SATCOM Receiver, SATCOM Transmitter/Transponder, SATCOM Transceiver, SATCOM Antenna, SATCOM Modem/Router, and Others), By Technology (SATCOM Vsat, Satcom-On-The-Move (SOTM), Satcom-On-The-Pause (SOTP), SATCOM Telemetry, and SATCOM Automatic Identification System), By Platform (Commercial and Government & Defense), By End Use (Portable SATCOM equipment, Land SATCOM equipment, Maritime SATCOM equipment, and Airborne SATCOM equipment), and Regional Forecast, 2019-2026” the market size stood at USD 22.61 billion in 2018.
Key Players In The Satellite Communication (SATCOM) Market:-
Inmarsat plc
Honeywell International, Inc.
The Boeing Company
L3 Harris Technologies, Inc.
Indra Sistemas, S.A.
General Dynamics Corporation
Cobham plc
Viasat, Inc.
Iridium Communications Inc.
Qualcomm Technologies, Inc.
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The emergence of COVID-19 has brought the world to a standstill. We understand that this health crisis has brought an unprecedented impact on businesses across industries. However, this too shall pass. Rising support from governments and several companies can help in the fight against this highly contagious disease. There are some industries that are struggling and some are thriving. Overall, almost every sector is anticipated to be impacted by the pandemic.
The Global Satellite Communication (SATCOM) Market Size is predicted to reach USD 41.33 billion by 2026, exhibiting a CAGR of 7.73% during the forecast period. The rising demand for small satellites in energy, oil & gas, defense, and other sectors will boost the satellite communication (SATCOM) market trends during the forecast period. The growing utilization of small satellites in the defense sector for applications such as, tactical communication, medium resolution imagery, and geospace & atmospheric research will create sales opportunities for the satellite communication (SATCOM) market share in the forthcoming years.
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An Outline of the Global Landscape:-
•Analyzing the size of the Global Satellite Communication (SATCOM) Market on the basis of value and volume.
•Technological Advancement and product developments.
•Deeply profiling future prospects and historical data base by complete industry research.
•Worldwide manufacturing analysis and supply chain.
•Extensive analysis of the market emerging trends and technology assessment.
•Exhaustive coverage of market drivers, restraints, opportunities, threats, limitations, and prospects.
•Detailed insights on the upcoming R&D product launches, sales, revenue, size, share and product consumption in the market.
Regional Analysis:
Surge in Telecommunication Industry to Stimulate Growth in Asia Pacific
The market in North America stood at 13.11 billion in 2018 and is predicted to grow rapidly during the forecast period owing to the growing military expenditure. The presence of key manufacturers such as General Dynamics Corporation, L3 Harris Corporation, Honeywell International, Inc., Hughes Network Systems LLC, and others will aid healthy growth of the market during the forecast period. Asia Pacific is likely to witness high demand for SATCOM owing to the surge in telecommunication, aviation, and defense sector. Europe is expected to accounted for a major share in the market due to the growing modernization in the region. Nonetheless, Latin America is expected to grow rapidly in the foreseeable future owing to the reinforcement of military communication infrastructure.
Have a Look at Related News:
https://www.globenewswire.com/news-release/2020/11/12/2125741/0/en/US-Reusable-Launch-Vehicle-Market-to-Reach-USD-1-634-9-Million-by-2027-Demand-for-Low-cost-Satellite-programs-will-Lead-to-a-Wider-Product-Adoption-says-Fortune-Business-Insights.html
https://www.globenewswire.com/news-release/2020/11/11/2124835/0/en/Military-Drone-Market-Size-to-Hit-USD-23-78-Billion-by-2027-Rapid-Advancements-in-Drone-Technologies-to-Open-New-Avenues-of-Expansion-for-the-Market-Says-Fortune-Business-Insights.html
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Airborne telemetry market is expected to grow at a CAGR of 6.37% in the forecast period of 2020 to 2027. Data Bridge Market Research report on airborne telemetry market provides analysis and insights regarding the various factors expected to be prevalent throughout the forecasted period while providing their impacts on the market’s growth.
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The Public Safety LTE & Mobile Broadband Market-Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 – 2030
Summary – A new market study, titled "The Public Safety LTE & Mobile Broadband Market-Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 – 2030" has been featured on WiseGuyReports.
Synopsis
Due to the bandwidth limitations of their traditional voice-centric LMR (Land Mobile Radio) networks, public safety agencies are keen to leverage commercial cellular network technology to support their growing broadband application needs. Considering its thriving ecosystem, spectrum flexibility and performance metrics, LTE has emerged as the leading candidate for public safety mobile broadband networks. In addition, with the recent approval of the MCPTT (Mission Critical Push to Talk) voice standard as part of 3GPP Release 13, LTE has also become an attractive substitute for providing LMR-like voice services.
Also read – http://www.digitaljournal.com/pr/4617896
The Qatar Ministry of Interior made headlines when it deployed a private 800 MHz LTE network in 2012. Since then, numerous public safety LTE networks have sprung up across the globe, including the UAE, China, Laos, Turkey and Kenya. Several early adopter LTE deployments are also operational in the United States, as part of the planned FirstNet nationwide public safety broadband network. While most initial public safety LTE investments are limited to small-scale networks, nationwide rollouts in the United States and South Korea are expected to trigger significant large-scale investments throughout the globe.
The European market is largely dominated by MVNO arrangements, such as the UK Home Office’s ESN (Emergency Services Network) program that will use EE’s commercial LTE network to deliver prioritized mission critical voice and data services for the UK’s public safety agencies. As part of the program, EE is enhancing its existing network with additional sites, satellite backhaul and a dedicated mobile core for first responders, among other investments.
Driven by the thriving ecosystem, SNS Research estimates that annual investments on public safety LTE infrastructure will reach $600 Million by the end of 2016. The market, which includes base stations (eNBs), mobile core and transport networking gear, is further expected to grow at a CAGR of 33% over the next four years. By 2020, these infrastructure investments will be complemented by over 4.4 Million LTE device shipments, including smartphones, rugged handheld terminals and vehicular routers.
The “Public Safety LTE & Mobile Broadband Market: 2016 – 2030 – Opportunities, Challenges, Strategies & Forecasts” report presents an in-depth assessment of the global public safety LTE market, besides touching upon the wider LMR and mobile broadband industries. In addition to covering the business case, challenges, technology, spectrum allocation, industry roadmap, value chain, deployment case studies, vendor products, strategies, standardization initiatives and applications ecosystem for public safety LTE, the report also presents comprehensive forecasts for mobile broadband, LMR and public safety LTE subscriptions from 2016 till 2030. Also covered are public safety LTE service revenues, over both private and commercial networks. In addition, the report presents revenue forecasts for public safety LTE infrastructure, devices, integration services and management solutions.
The report comes with an associated Excel datasheet suite covering quantitative data from all numeric forecasts presented in the report, as well as a list and associated details of over 90 global public safety LTE network commitments (as of Q2’2016).
Key Findings:
The report has the following key findings:
SNS Research estimates that annual investments on public safety LTE infrastructure will reach $600 Million by the end of 2016. The market, which includes base stations (eNBs), mobile core and transport networking gear, is further expected to grow at a CAGR of 33% over the next four years.
By 2020, these infrastructure investments will be complemented by over 4.4 Million LTE device shipments, including smartphones, rugged handheld terminals and vehicular routers.
Following the Qatar Ministry of Interior’s private 800 MHz LTE network deployment in 2012, multiple private LTE rollouts are underway by security forces throughout the oil rich GCC (Gulf Cooperation Council) region, including the Abu Dhabi and Dubai police forces.
Driven by nationwide public safety LTE network rollouts in the United States and South Korea, the North America and Asia Pacific regions will account for nearly 70% of all public safety LTE investments over the next four years.
Almost all major LMR industry players are leveraging partnerships with established LTE infrastructure OEMs such as Ericsson, Nokia, Huawei and Samsung, to offer end-to-end LTE solutions.
Consolidation efforts are continuing to take place throughout the industry, particularly among the largest LTE infrastructure OEMs and public safety system integrators.
Topics Covered:
The report covers the following topics:
Business case for public safety LTE and mobile broadband services, including key benefits and challenges
Technology, economics, trends, commercial commitments and deployment case studies
List of public safety LTE engagements worldwide
Public safety LTE infrastructure, devices and applications
Industry roadmap, value chain and standardization initiatives
Spectrum allocation, deployment models and funding strategies
Profiles and strategies of over 260 ecosystem players including public safety system integrators and LTE infrastructure/device OEMs
TCO analysis of private and commercial public safety LTE deployments
Military and tactical LTE deployments
Public safety LTE base station (eNB) form factor analysis
Exclusive interview transcripts from 5 key ecosystem players: Ericsson, Airbus Defence and Space, Sepura, Aricent and Parallel Wireless
Strategic recommendations for vendors, system integrators, public safety agencies and mobile operators
Market analysis and forecasts from 2016 till 2030
Forecast Segmentation:
Market forecasts are provided for each of the following submarkets and their subcategories:
Public Safety LTE Infrastructure
Submarkets
RAN (Radio Access Network)
EPC (Evolved Packet Core) and Policy
Mobile Backhaul and Transport
RAN Base Station (eNB) Mobility Categories
Fixed Base Stations
Transportable Base Stations
RAN Base Station (eNB) Cell Size Categories
Macrocells
Small Cells
Transportable RAN Base Station (eNB) Form Factor Categories
NIB (Network-in-a-Box)
VNS (Vehicle Network System)
SOW (System-on-Wheels)
Airborne Platform
Public Safety LTE Management & Integration Solutions
Submarkets
Network Integration & Testing
Device Management & User Services
Managed Services, Operations & Maintenance
Cybersecurity
Public Safety LTE Devices
Submarkets
Private LTE
Commercial LTE
Form Factor Categories
Smartphones & Handportable Terminals
Vehicle Mount Routers & Terminals
Tablets & Notebook PCs
USB Dongles & Others
Public Safety LTE Subscriptions & Service Revenue
Submarkets
Private LTE
Commercial LTE
Public Safety User Subscriptions over Private Mobile Broadband
Submarkets
Private LTE
Private WiMAX
Public Safety User Subscriptions over Commercial Mobile Broadband
Submarkets
3G
WiMAX
LTE
5G & Beyond
LMR Subscriptions
Submarkets
Analog
DMR
dPMR, NXDN & PDT
P25
TETRA
Tetrapol
Others
LMR Data Subscriptions
Submarkets
P25 - Phase 1
P25 - Phase 2
TETRA
TEDS
Tetrapol
Others
Public Safety LTE Applications
Submarkets
Video Applications
zGIS, AVLS and Mapping
Mobile VPN Access & Security
CAD (Computer Aided Dispatching)
Remote Database Access
Telemetry and Remote Diagnostics
Bulk Multimedia/Data Transfers
PTT & Voice over LTE
Situational Awareness Applications
Regional Segmentation
Asia Pacific
Eastern Europe
Latin & Central America
Middle East & Africa
North America
Western Europe
Key Questions Answered:
The report provides answers to the following key questions:
How big is the public safety LTE opportunity?
What trends, challenges and barriers are influencing its growth?
How is the ecosystem evolving by segment and region?
What will the market size be in 2020 and at what rate will it grow?
Which regions and submarkets will see the highest percentage of growth?
How does standardization impact the adoption of LTE for public safety applications?
When will MCPTT and proximity services see large scale proliferation?
What is the status of private LTE rollouts and public safety MVNO offerings across the globe?
What opportunities exist for commercial mobile operators and MVNOs in the public safety LTE market?
Is there a market for 400 MHz LTE networks?
What are the prospects of tactical, vehicle-mounted and airborne LTE eNB platforms?
How can public safety agencies leverage unused spectrum resources to fund private LTE networks?
What strategies should system integrators and vendors adopt to remain competitive?
List of Companies Mentioned:
The following companies and organizations have been reviewed, discussed or mentioned in the report:
3GPP (Third Generation Partnership Project)
Aaeon
Abu Dhabi Police
Accelleran
AceAxis
ACMA (Australian Communications and Media Authority)
Aculab
Adax
ADCOM911 (Adams County Communication Center)
ADRF (Advanced RF Technologies)
Advantech
Advantech Wireless
Aeroflex
Affarii Technologies
Affirmed Networks
Agile Networks
Airbus Defence and Space
Airbus Group
Air-Lynx
Airspan Networks
Airvana
Airwave Solutions
Ajman Police
Alcatel-Lucent
Altiostar Networks
Amdocs
Anite
Anritsu Corporation
APCO International (Association of Public-Safety Communications Officials)
Apple
ARASKOM
Arcadyan
Argela
Aricent
ARItel
Arqiva
Artemis Networks
Aselsan
ASOCS
ASTRI (Hong Kong Applied Science and Technology Research Institute)
ASTRID
ASTRO Solutions
Asus (ASUSTeK Computer)
AT&T
Athena Wireless Communications
Athonet
ATIS (Alliance for Telecommunications Industry Solutions)
Atlas Telecom
Avanti Communications Group
Avaya
AVI
Aviat Networks
Avtec
Axell Wireless
Axis Communications
Axis Teknologies
Axxcelera Broadband Wireless
BAE Systems
BandRich
Barrett Communications
BASE (Belgium)
Baylin Technologies
BayRICS (Bay Area Regional Interoperable Communications Systems Authority)
BayWEB (Bay Area Wireless Enhanced Broadband system)
BFDX
Bilbao Metro
Bird Technologies
Bittium Corporation
Black Box Corporation
Blackhawk Imaging
Blackned
Bluebird
Boise Police Department
Bosch Security Systems
Brazilian Army
Bridgewater
Broadcom
Brocade Communications Systems
BT Group
BTI Wireless
C4i
CalAmp Corporation
Calgary Police Service
Camden County Public Safety
Canadian Advanced Technology Alliance
Casio Computer Company
Catalyst Communications
Caterpillar
Cavium
CCI (Communication Components Inc.)
CCI (Competitive Companies, Inc.)
CCI (Crown Castle International)
CCSA (China Communications Standards Association)
CCTI (Catalyst Communications Technologies, Inc.)
Cellvine
Ceragon
China Mobile
Ciena Corporation
Cisco Systems
CITIG (Canadian Interoperability Technology Interest Group)
City of Charlotte
City of Fort Worth
City of Irving
City of New Orleans
City of Oakland
City of Pembroke Pine
Cobham
Cobham Wireless
Codan Radio Communications
Colorado Parks and Wildlife
Comba Telecom Systems Holdings
CommAgility
CommandWear Systems
CommScope
Comtech Telecommunications Corporation
CONET Technologies
Connectem
Contela
Core Network Dynamics
Coriant
Corning
Covia Labs
CPqD (Center for Research and Development in Telecommunications, Brazil)
Cradlepoint
CSI (Cellular Specialties, Inc.)
Dali Wireless
DAMM Cellular Systems
DAP Technologies
DAPage Notifications
DataNet Software
Datang Group
Datang Mobile
Dell
DeltaNode
Dish Network
DNK (Norwegian Directorate for Emergency Communication)
Dongwon T&I
DragonWave
DSC (Digital Special Communication)
Dubai Police
Durabook (Twinhead International Corporation)
Dutch Police
EA Networks (Electricity Ashburton)
EADS
Eastcom
EchoStar Corporation
Eden Rock Communications
EE
EENA (European Emergency Number Association)
EF Johnson
Elbit Systems
Elta Systems
EMC Corporation
Ericsson
Ericsson LG
ETELM
Etherstack
Ethertronics
ETRI (Electronics and Telecommunications Research Institute, South Korea)
ETSI (European Telecommunications Standards Institute)
Eventide
EXACOM
Exalt Communications
Exelis
EXFO
ExteNet Systems
Falu Municipality
Federated Wireless
FirstNet (First Responder Network Authority)
Foxcom
Fraunhofer Fokus
French Armed Forces
French MOI (Ministry of Interior)
Frequentis
Fujitsu
Galtronics
Gemtek Technology Company
GENBAND
General Dynamics Corporation
General Dynamics Mission Systems
Genesis Group
German Armed Forces (Bundeswehr)
Getac Technology Corporation
Goodman Networks
Goodmill Systems
Google
Governor's OIT (Office of Information Technology), State of Colorado
Grant County Sheriff’s Office
GrenTech (China GrenTech Corporation)
GWT (Global Wireless Technologies)
Harris Corporation
Harris County
HFRS (Hampshire Fire & Rescue Service)
Hitachi
Home Office, UK
Honeywell
Hong Kong Police Force
HP (Hewlett-Packard Company)
HQT Radio
HTC
Huawei
Hughes Communications
Hughes Network Systems
Hytera Communications Company
IAI (Israel Aerospace Industries)
iBwave Solutions
iCOM
IDF (Israel Defense Forces)
Imtradex
Inmarsat
InnerWireless
Intel Corporation
Intel Security
InterDigital
Intersec
Intrepid Networks
ip.access
IPWireless
ITELAZPI
ITU (International Telecommunication Union)
JDI (JING DENG INDUSTRIAL)
JMA Wireless
Jordanian Armed Forces
JRC (Japan Radio Company)
Juni Global
Juniper Networks
JVCKENWOOD Corporation
Kapsch CarrierCom
Kathrein-Werke KG
KBR
Kelrad Software
Kenyan Police Service
Keysight Technologies
Kirisun Communications
Kisan Telecom
KMW
Kodiak Networks
KPN
KT Corporation
Kudelski Group
Kyocera Communications
L-3 Communication Systems-West
L-3 Communications Holdings
Laos Police
LA-RICS (Los Angeles Regional Interoperable Communications System)
Las Vegas Metropolitan Police Department
Lemko Corporation
Lenovo
Leonardo-Finmeccanica
LG CNS
LG Electronics
LG Group
LGS Innovations
Ligado Networks
Lijiang Police
LiveViewGPS
Lockheed Martin Corporation
Logic Instrument
Mavenir Systems
McWane
MegaFon
Mentura Group
MER-CellO Wireless Solutions
MetroPCS
Miami Dade Police Department
Miami-Dade County
Microlab
Milestone Systems
MIMOon
Ministry of Industry and Information Technology, China
Mitel Networks Corporation
Mitsubishi Electric Corporation
MobileDemand
Mobilicom
Mobistar
MODUCOM (MODULAR COMMUNICATION SYSTEMS)
Moscow Police
Moseley Associates
Motorola Mobility
Motorola Solutions
MPS (Ministry of Public Security, China)
MPSS (Ministry of Public Safety and Security, South Korea)
MSB (Swedish Civil Contingencies Agency)
MTI Mobile
Mutualink
National Rail, UK
NATO (North Atlantic Treaty Organization)
NCRIC (Northern California Regional Information Center)
NEC Corporation
Nedaa
Neptune Mobile
Net4Mobility
Netas
NetMotion Wireless
Nevada Department of Transportation
New Jersey ROIC (Regional Operations Intelligence Center)
New Jersey State Police
New Jersey Transit
New Mexico DoIT (Department of Information Technology)
New Postcom Equipment Company
New Zealand Police
NewCore Wireless
Nexius
NextG Networks
NextNav
NI (National Instruments) Corporation
Nokia Corporation
Nokia Networks
Northrop Grumman Corporation
nTerop Corporation
NTT DoCoMo
NuRAN Wireless
Nutaq
O3b Networks
Oceus Networks
Octasic
OMA (Open Mobile Alliance)
Oman Royal Office
Ontario Ministry of Transportation
ONTHEGODEVICES
OpenSignal
Optiway
Panasonic Corporation
Panda Electronics (Nanjing Panda Electronics Company)
Panorama Antennas
Parallel Wireless
Pennsylvania State Police
Pepro
Philadelphia Police Department
Phonak
Piciorgros (Funk-Electronic Piciorgros),
Pikewerks Corporation
Polaris Networks
Police Federation of Australia
Portalify
Potevio (China Potevio Company)
PowerTrunk
Productivity Commission, Australia
Proximus
Pryme Radio Products
PSCR (Public Safety Communications Research)
Public Wireless
PureWave Networks
Puxing Radio
Pyramid Communications
Qatar Armed Forces
Qatar MOI (Ministry of Interior)
Qigihar Municipal Public Security Bureau
Qiqihar Police
Qualcomm
Quanta Computer
Qucell
Quortus
RACOM
Radio IP
Radisys Corporation
RADWIN
RAVEN Electronics Corporation
Raytheon Company
RCMP (Royal Canadian Mounted Police)
Reality Mobile
Redline Communications
RELM Wireless
RF Window
RFS (Radio Frequency Systems)
Rio de Janeiro Fire Department
Rivada Networks
Rohde & Schwarz
Rohill
Roper Industries
Rosenberger
Safaricom
SAIC (Science Applications International Corporation)
Samji Electronics Company
Samsung Electronics
Samsung Group
SANG (Saudi Arabian National Guard)
Sao Paulo Military Police
Sapura Secured Technologies
Saudi MOI (Ministry of Interior)
Savox Communications
Selex ES
Sepura
SerComm Corporation
SES
SETAR
Sevis Systems
SFR
Shanghai Police Department
Siemens
Siemens Convergence Creators
Sierra Wireless
Signalion
Siklu
Simoco
SiRRAN
SK Telecom
SK Telesys
SLA Corporation
SLC (Secure Land Communications)
Smith Micro Software
SOLiD (SOLiD Technologies)
Sonic Communications
Sonim Technologies
Sony Corporation
Space Data
Spectra Group
SpiderCloud Wireless
Spirent Communications
Star Solutions
State of Louisiana
State of Minnesota
State of Mississippi
State of New Jersey
State of New Mexico
State of Oklahoma
State of Texas
State Security Networks Group, Finland
Stop Noise
Sumitomo Electric Industries
Sunnada (Fujian Sunnada Communication Company)
Surrey Police
Swedish National Police
Symantec
Tait Communications
Taqua
TCCA (TETRA and Critical Communications Association)
TCL Communication
TCS (TeleCommunication Systems)
TDIA (TD-Industry Alliance)
TE Connectivity
Techosonic Industries
Tecore
TEKTELIC Communications
Telefónica
Televate
TELEX
Telrad Networks
Telstra
Teltronic
Telum
TESSCO
TETRAtab
Thales
TI (Texas Instruments)
TIA (Telecommunications Industry Association)
TITAN Communication Systems
T-Mobile
Toshiba Corporation
Tropico
Turk Telekom
Turkish National Police Force
Twisted Pair Solutions
U.S. Army
U.S. CBP (Customs and Border Protection)
U.S. Cellular
U.S. Coast Guard
U.S. Department of Commerce
U.S. Department of Defense
U.S. Department of Homeland Security
U.S. Department of State
U.S. FCC (Federal Communications Commission)
U.S. FEMA (Federal Emergency Management Agency)
U.S. Navy
U.S. NIST (National Institute of Standards and Technology)
U.S. NPSTC (National Public Safety Telecommunications Council)
U.S. NTIA (National Telecommunications and Information Administration)
UAE MOI (Ministry of Interior)
Ubidyne
UIC (International Union of Railways)
UNIMO Technology
University of Ottawa
Uppsala Ambulance Services
US Digital Designs
USPTO (U.S. Patent and Trademark Office)
Utility Associates
Verizon Communications
ViaSat
Viavi Solutions
Vidyo
Vientiane Municipal Government
VIRVE
Vision Technologies
VMware
Vodafone
Vodafone New Zealand
West Corporation
Westell Technologies
Western Australia Police
Wildox
Winmate
WinMate Communication
Wireless Telecom Group Company
WNC (Wistron NeWeb Corporation)
Wytec International
xG Technology
Xplore Technologies Corporation
Z-Com (ZDC Wireless)
Zetron
Zhengzhou Metro
Zhengzhou Municipal Public Security Bureau
Zhengzhou Police
Zinwave
ZTE
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Airborne Telemetry Market Report 2016 By Type, Application, Size 2024
Airborne Telemetry Market Report 2016 By Type, Application, Size 2024
Global Airborne Telemetry Market: Overview
The airborne telemetry is the use of the automated communication processes for the measurement and collection of data from inaccessible or remote areas and then transmitting it to equipment where the data can be monitored. The airborne telemetry marketis indeed helping the nations capture most of the data in order to protect the homeland from disastrous…
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Recent Research: Airborne Telemetry Market Report 2017
Recent Research: Airborne Telemetry Market Report 2017
Airborne , Telemetry ,Airborne Telemetry ,Airborne Telemetry market,Airborne Telemetry trends, Airborne Telemetry system,Airborne Telemetry transmitters,Airborne Telemetry market size,Airborne Telemetry industry Airborne Telemetry market is valued at USD XX million in 2016 and is expected to reach USD XX million by the end of 2022, growing at a CAGR of XX% between 2016 and 2022. Geographically,…
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#Airborne#Airborne Telemetry#Airborne Telemetry industry#Airborne Telemetry market#Airborne Telemetry market size#Airborne Telemetry SYSTEM#Airborne Telemetry transmitters#Airborne Telemetry trends#Telemetry
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Airborne Telemetry Market Research Report with Growth, Trends and Forecast 2021 to 2026
Overview Of Airborne Telemetry Industry 2020-2027:
This has brought along several changes in This report also covers the impact of COVID-19 on the global market.
The Airborne Telemetry Market analysis summary by Syndicate Reports is a thorough study of the current trends leading to this vertical trend in various regions. The research summarizes important details related to market share, market size, applications, statistics, and sales. In addition, this study emphasizes thorough competition analysis on market prospects, especially growth strategies that market experts claim.
Airborne Telemetry Market competition by top manufacturers as follows:
BAE Systems (U.K.), Rockwell Collins (U.S.), Honeywell International (U.S.), L-3 Communications Holdings (U.S.), Cobham (U.K.)
Get a Sample PDF copy of the report@ https://www.syndicatemarketresearch.com/sample/airborne-telemetry-market
The global Airborne Telemetry market has been segmented on the basis of technology, product type, application, distribution channel, end-user, and industry vertical, along with the geography, delivering valuable insights.
The Type Coverage in the Market are:
Receiver, Transmitter, Antenna
Market Segment by Applications covers:
Commercial Aviation, Military Aviation, Others
Market segment by Regions/Countries, this report covers
North America Europe China Rest of Asia Pacific Central & South America Middle East Africa
Major factors covered in the report:
Global Airborne Telemetry Market summary
Market Competition in terms of Manufacturers
Economic Impact on the Industry
Market Analysis by Application
Production, Revenue (Value), Price Trend by Type
Cost Investigation
Industrial Chain, Raw material sourcing strategy and Downstream Buyers
Production, Revenue (Value) by geographical segmentation
Marketing Strategy comprehension, Distributors and Traders
Global Airborne Telemetry Market Forecast
Study on Market Research Factors
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The analysis objectives of the report are:
To know the Global Airborne Telemetry Market size by pinpointing its sub-segments.
To analyze the amount and value of the Global Airborne TelemetryMarket, depending on key regions
To study the important players and analyze their growth plans.
To analyze the Global Airborne Telemetry Market concerning growth trends, prospects, and also their participation in the entire sector.
To examine the Global Airborne Telemetry market size (volume & value) from the company, essential regions/countries, products and application, background information.
Primary worldwide Global Airborne Telemetry Market manufacturing companies, to specify, clarify, and analyse the product sales amount, value and market share, market rivalry landscape, SWOT analysis, and development plans for future.
To examine competitive progress such as expansions, arrangements, new product launches, and acquisitions on the market.
Our report offers:
Market share assessments for the regional and country-level segments.
Supply chain trends mapping the latest technological advancements.
Strategic recommendations for the new entrants.
Market share analysis of the top industry players.
Market forecasts for a minimum of 9 years of all the mentioned segments, sub-segments, and the regional markets.
Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations).
Company profiling with detailed strategies, financials, and recent developments.
Competitive landscaping mapping the key common trends.
Strategic recommendations in key business segments based on market estimations.
Access full Report Description, TOC, Table of Figure, Chart, etc. @ https://www.syndicatemarketresearch.com/market-analysis/airborne-telemetry-market.html
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