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Increasing implementation for detection of oil & gas deposits is expected to propel the global sonobuoy market growth
The demand and supply of sonobuoys, which are underwater acoustic devices used for detecting, locating, and categorising undersea sounds, particularly submarines, are referred to as the sonobuoy market. Military forces, oil and gas firms, and scientific research groups all employ sonobuoys for a variety of applications including underwater surveillance, anti-submarine warfare, underwater mapping, and environmental monitoring.
The increasing requirement for underwater surveillance and reconnaissance in military operations, the expanding need for hydrocarbon exploration and production, and the rise of the offshore energy sector are driving demand for sonobuoys. The development of new and better sonobuoy technologies, as well as the rising demand for cost-effective and dependable underwater surveillance systems, are also propelling the sonobuoy market forward.
Ultra Electronics, Lockheed Martin, and OCEANWORKS are among the companies involved in the manufacture and supply of sonobuoys, and they are investing in research and development to increase the performance and capabilities of their products.
However, the market faces obstacles due to the expensive cost of sonobuoys and the severe regulatory regulations involved with their use. The lack of proper launch and recovery technologies, as well as the necessity for specialist trained personnel, are major challenges restricting the growth of the sonobuoy market.
To summarise, the sonobuoy industry is likely to expand in the future years, driven by increased demand from military and commercial customers, but high costs and rigorous regulations are obstacles that must be solved.Read more@ https://techinforite.blogspot.com/2023/02/sonobuoys-market-report-2023-size-share.html
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Sonobuoy Market 2028 Growth Outlook and Demand Forecast
Geopolitical Tensions and Regional Security Concerns, Technological Advancements and Innovation, and Maritime Piracy and Maritime Domain Awareness are factors driving the Global Sonobuoy market in the forecast period 2024-2028.
According to TechSci Research report, “Global Sonobuoy Market - Industry Size, Share, Trends, Competition Forecast & Opportunities, 2028”, the Global Sonobuoy Market stood at USD 316 million in 2022 and is anticipated to grow with a CAGR of 5.17% in the forecast period, 2024-2028. A small, specialized tool used for underwater acoustic reconnaissance and surveillance is called a sonobuoy. It is an essential tool for scientific oceanography research as well as naval and maritime operations. Usually, they are launched into the ocean from ships or airplanes.
When they are deployed, they sink to a preset depth at which point they start to send out acoustic signals and gather data on underwater sound. Sonar pings, underwater communications, and background noise are a few examples of these signals. These acoustic signals are detected and recorded by the products' hydrophones, which are sensitive underwater microphones. After gathering, the data is sent to the deploying platform so that it can be used for tracking and identifying underwater activities, marine life, and submarines.
The global sonobuoy market is a critical and rapidly evolving segment within the defense and maritime industries. Sonobuoys are small, expendable devices that are deployed into the ocean to collect acoustic information and detect underwater threats. These versatile instruments have been instrumental in underwater surveillance, anti-submarine warfare, and maritime research. This market is driven by a multitude of factors, including the growing importance of maritime security, the rise in submarine activity, technological advancements in sonobuoy systems, and the increasing demand for underwater environmental monitoring.Â
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Sonobuoys have emerged as indispensable tools for maritime security and defense. They are used to detect, track, and locate submarines, both friendly and potentially hostile. As submarine activities have increased, especially in contested regions, the need for effective underwater surveillance has grown. Sonobuoys play a pivotal role in providing early warning and situational awareness, making them an essential component of modern naval and maritime strategies.
The global sonobuoy market is driven by a multitude of factors, one of which is the growing importance of maritime security. Nations and naval forces are increasingly concerned about protecting their maritime interests and territorial waters. The rise in piracy, smuggling, and other illegal activities at sea has further emphasized the need for robust maritime surveillance. Sonobuoys, with their ability to detect underwater threats, are pivotal in enhancing maritime domain awareness. The increasing submarine activity, both by naval and non-naval actors, is another significant driver of the sonobuoy market. The deployment of submarines has become more common, not only among traditional naval powers but also among smaller and emerging maritime nations. The ability to detect and track submarines, especially in areas of strategic importance, has become a national security priority.
Furthermore, technological advancements in sonobuoy systems have propelled market growth. Innovations in sensor technology, data processing, and acoustic analysis have made modern sonobuoys more capable and versatile. The development of multi-static and networked sonobuoy systems has increased their effectiveness in tracking submarines over larger areas. The demand for underwater environmental monitoring is also driving the market. Sonobuoys are not limited to defense applications; they are increasingly being used for scientific research and environmental monitoring. Researchers use sonobuoys to study marine life, track migratory patterns, and gather data on oceanic conditions. This dual-use nature of sonobuoys makes them valuable tools for civilian and defense applications alike.
Despite its promising outlook, the global sonobuoy market faces several challenges. One of the most notable challenges is the cost of sonobuoy procurement and deployment. High-quality sonobuoys, equipped with advanced sensors, data processing capabilities, and communication systems, can be expensive. This cost factor can be a deterrent for smaller maritime nations or organizations with budget constraints. Moreover, the technical complexity of sonobuoy systems poses challenges. Maintaining and operating these systems, especially in harsh maritime environments, demands specialized training and expertise.
Ensuring that sonobuoys are deployed accurately and effectively requires skilled personnel and logistical support. International export controls add another layer of complexity to the market. The export of advanced sonobuoy technology is often subject to strict government regulations, aimed at preventing sensitive defense technology from falling into the wrong hands. Navigating these regulations while fulfilling the needs of allied and partner nations can be a delicate diplomatic and logistical challenge for defense contractors and governments.
The limited endurance of sonobuoys presents another challenge. Expendable by design, sonobuoys typically have a finite operational period before they sink or cease to function. Extending this endurance, especially for long-duration surveillance missions, is a technical challenge that the market is actively addressing. Looking ahead, several trends are shaping the future of the global sonobuoy market. One prominent trend is the miniaturization of sonobuoy systems. Smaller, more lightweight sonobuoys are being developed, making them easier to deploy and reducing their logistical footprint. Miniaturization enhances the versatility and affordability of sonobuoys, making them accessible to a wider range of users.
Additionally, the integration of artificial intelligence and machine learning into sonobuoy data analysis is on the rise. These technologies enable automatic target recognition, enhancing the ability to detect and classify underwater threats. AI-based sonobuoys can process large volumes of acoustic data, identify patterns, and provide actionable intelligence in real-time. The development of multi-sensor sonobuoys is another noteworthy trend. These sonobuoys combine acoustic sensors with other sensors like electromagnetic, chemical, or environmental sensors, providing a more comprehensive picture of the underwater environment. Multi-sensor sonobuoys are valuable for both defense and scientific applications.
Lastly, underwater communication and networking capabilities are becoming more prevalent in sonobuoy systems. Networked sonobuoys can collaborate, sharing data and coordinating their efforts for improved situational awareness. This trend is crucial for tracking submarines and underwater threats over larger areas.
Major companies operating in Global Sonobuoy Market are:
Sparton
L3Harris Technologies Inc.
Ultra
Lockheed Martin Corporation
Thales Group
Aselsan AS
General Dynamics Corporation
SeaLandAire Technologies, Inc.
Radixon Group.
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“The global sonobuoy market is a pivotal segment in the defense and maritime industries, facilitating underwater surveillance and security. These small, expendable devices play a crucial role in detecting underwater threats, especially in the context of increasing submarine activities and growing maritime security concerns. With evolving sensor technology and the integration of artificial intelligence, sonobuoys have become more versatile and effective in tracking submarines and gathering acoustic data for both military and scientific purposes.
The market faces challenges related to cost, technical complexity, and export regulations, but ongoing trends such as miniaturization, multi-sensor integration, and networking capabilities are shaping its future. Sonobuoys continue to be essential tools for enhancing maritime domain awareness and safeguarding maritime interests worldwide.” said Mr. Karan Chechi, Research Director with TechSci Research, a research-based management consulting firm.
“Sonobuoy Market –Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Type (Active, Passive, Special Purpose), By Application Type (Commercial, Defense), By Region,Competition, 2018-2028”, has evaluated the future growth potential of Global Sonobuoy Market and provides statistics & information on market size, structure and future market growth. The report intends to provide cutting-edge market intelligence and help decision makers take sound investment decisions. Besides, the report also identifies and analyzes the emerging trends along with essential drivers, challenges, and opportunities in Global Sonobuoy Market.
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#Sonobuoy Market#Sonobuoy Market Size#Sonobuoy Market Share#Sonobuoy Market Trends#Sonobuoy Market Growth#Sonobuoy Market Forecast
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Sonobuoy Industry Insights: Growth Drivers and Regional Analysis
The global sonobuoy market size was estimated at USD 429.2 million in 2023 and is estimated to grow at a CAGR of 6.5% from 2024 to 2030. Increasing focus on maritime security, with nations worldwide aiming to enhance their undersea warfare capabilities is expected to boost the market growth in the long run.
Increasing demand for submarine products is likely to be driven by the rising geopolitical tensions in various maritime regions, leading to an increased deployment of submarines and other underwater assets that necessitate advanced detection technologies. Sonobuoys, being crucial for anti-submarine warfare (ASW) operations, have witnessed a growing traction in the defense sector, thus benefiting the market growth.
Advancements in sonar technology, which have significantly improved the efficiency and reliability of systems used in anti-submarine operations. With the integration of AI and machine learning, modern sonobuoys can now offer enhanced data analysis capabilities, providing more accurate and timely information. This technological evolution is anticipated to improve the operational effectiveness of sonobuoys but along with new applications in environmental monitoring and research.
Sonobuoy Market Report Highlights
Active type products have key role in real-time data transmission during ASW operations. Active products emit sonar pulses to detect underwater objects and are necessary for tracking submarines and other underwater threats.
In defense, sonobuoys play integral role in ASW operations by naval forces. Their ability to detect and track submarines is crucial for maintaining maritime security and protecting strategic interests.Â
Rising focus on reinforcing maritime defense capabilities in countries such as U.S. and Canada is likely to drive the market growth. North American market benefits from substantial military budgets and a strong technological base, fostering the development and deployment of advanced marine products.
Global Sonobuoy Market Report Segmentation
This report forecasts revenue and volume growth at global, country, and regional levels and provides an analysis of the latest trends in each of the sub-segments from 2018 to 2030. For this study, Grand View Research has segmented the global sonobuoy market report based on type, application, and region:
Type Outlook (Revenue, USD Million, 2018 - 2030)
Active
Passive
Application Outlook (Revenue, USD Million, 2018 - 2030)
Defense
Commercial
Regional Outlook (Revenue, USD Million, 2018 - 2030)
North America
US
Canada
Mexico
Europe
Germany
UK
Russia
Asia Pacific
China
India
Japan
South Korea
Central & South America
Brazil
Middle East & Africa
GCC
South Africa
Order a free sample PDF of the Sonobuoy Market Intelligence Study, published by Grand View Research.
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Sonar System Market Size, Share, Industry Growth, Trends, and Segment Analysis by 2032
The SONAR system market size is predicted to reach USD 3.76 billion by 2029 and exhibit a CAGR of 7.96% during the projected period. Fortune Business InsightsTM has presented this information in its report titled, “SONAR System Market, 2022-2029”. The market stood at USD 2.09 billion in 2021 and USD 2.20 billion in 2022. Sound Navigation and Ranging (SONAR) is a sophisticated technique that uses sound propagation to navigate and communicate with underwater objects.
Informational Source:
The use of SONAR systems with deep neural networks is revolutionizing fish monitoring, especially in aquaculture farms where expanding fish resources is a priority. These systems combine high-precision imaging SONAR with advanced underwater optical cameras, enabling clear monitoring even at night. This technology is improving the efficiency of fish farming and driving demand in the market.
Traditional optical cameras struggle to capture images in low light or murky water, making night monitoring challenging. However, advancements in underwater optical cameras that work seamlessly with SONAR systems are boosting market growth. For example, the SCAN-650 sector scanning SONAR, developed by JW Fishers, is widely used globally. It delivers detailed images of underwater environments, regardless of water clarity, enhancing fish monitoring capabilities.
List of Key Market Players:
ASELSAN A.Ĺž. (Turkey)
ATLAS ELEKTRONIK INDIA Pvt. Ltd. (India)
DSIT Solutions Ltd. (Israel)
EdgeTech (U.S.)
FURUNO ELECTRIC CO., LTD. (Japan)
Japan Radio Co. (Japan)
KONGSBERG (Norway)
Lockheed Martin Corporation (U.S.)
L3Harris Technologies, Inc. (U.S.)
NAVICO (Norway)
Raytheon Technologies Corporation (U.S.)
SONARDYNE (U.K)
Teledyne Technologies Incorporated. (U.S.)
Thales Group (France)
Ultra (U.K)
The SONAR systems market is highly competitive, with many companies contributing to its development. Key trends in the market include surveillance network SONAR, diver detection systems, dual-axis SONAR (DAS), and chirp technology. Leading players dominate due to their diverse product offerings and strong focus on research and development. For instance, in March 2020, Impact Subsea introduced the ISS360 SONAR, the world’s smallest imaging SONAR. It delivers high-quality images with a range of up to 90 meters (295 feet).
Teledyne Technologies Incorporated stands out by offering a wide range of 2D and 3D SONARs, acoustic modems, and data visualization/charting software. Their technology is designed to accommodate all types of sound navigation systems for naval vessels.
Segments:
On the basis of product type, the market is divided into sonobuoy, stern-mounted, hull-mounted, and DDS. On the basis of application, the market is split into defense and commercial. On the basis of platform, the market is divided into airborne and ship type. On the basis of solution, the market is divided into hardware (control units, transmitter and receiver, displays sensors, which is further divided into ultrasonic diffuse proximity sensors, VME-ADC, ultrasonic through-beam sensors, ultrasonic retro-reflective sensors, and others), and software. On the basis of end-user, the market is bifurcated into retrofit and line fit. Geographically, the market is classified into Europe, North America, Asia Pacific, and the Rest of the World.
Report Coverage:
The research report provides a thorough examination of the market. It focuses on key aspects such as leading companies, various platforms, product types, solutions, and SONAR system applications. Apart from that, the report provides insights into market trends and highlights important industry developments. In addition to the aforementioned factors, the report includes a number of factors that have contributed to the development of the developed market in recent years.
Drivers & Restraints:
Tactical Defense Operations are Surging the Demand for Sonobuoys
A sonobuoy is a sophisticated underwater acoustic research system that naval ships drop or eject. Sonobuoys use a sophisticated transducer and a radio transmitter to record and transmit underwater sounds. Other environmental data, such as wave height and water temperature, are also provided by special-purpose buoys. The market is expected to expand as the use of sonobuoys in military vessels expands. However, the steep cost associated with SONAR development may impede the SONAR system market growth.
Regional Insights:
North America to be a Dominant Region of the Global Market
North America dominated the market in 2021, with market size of USD 665.5 million. North America's dominance is owing to the rise in naval shipbuilding in the U.S. 82 new ships costing up to USD 147 billion will be added in the U.S. between 2022 - 2026, according to a shipbuilding plan announced in 2020.
Asia Pacific will experience remarkable growth as a result of increased naval spending and an increase in domestic ship manufacturing in China and South Korea. Ship deliveries in Japan have grown and various South Korean shipbuilding players have integrated automation into ship systems to drive the market development.
As the SONAR system market share increases in Europe, this is largely driven by the introduction of a new generation of threat detection and identification capabilities in ships and the retrofitting of vessels with autonomous engineering systems. Increased investment in marine system upgrades is anticipated to fuel the market in the U.K.
Competitive Landscape:
The dominant factor responsible for these key market players' dominance is a diverse product portfolio combined with R&D activity. Impact Subsea will launch the ISS360 SONAR, the world's tiniest imaging SONAR, in March 2020. It has a capacity of up to 90 meters/295 feet and provides excellent image quality.
Key Industry Development:
February 2022:Â Leonardo SpA awarded ELAC SONAR a USD 58 million contract to supply SONAR systems for two new submarines supplied by Fincantieri for the Italian Navy.
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Market Share Dynamics in the Emerging Sonar Systems Industry
Market Overview
The Sonar System Market was valued at USD 5.9 Billion in 2021 and is projected to reach USD 6.5 Billion by 2026, growing at a Compound Annual Growth Rate (CAGR) of 1.8% from 2021 to 2026. Sonar systems, which use sound propagation to navigate, communicate, or detect objects under the surface of the water, play a crucial role in various applications such as anti-submarine warfare, seabed mapping, and commercial fishing.
Market Size and Growth
Current Market Size
As of 2021, the Sonar System Market stands at USD 5.9 billion. This substantial market size is driven by the adoption of sonar systems by naval forces to enhance anti-submarine warfare capabilities, the growing use of sonobuoy in tactical defense programs, and the rising demand for high-resolution imaging for seabed mapping.
Projected Market Size
The market is anticipated to grow to USD 6.5 billion by 2026, demonstrating a steady CAGR of 1.8%. This growth is attributed to the stable deliveries of military vessels, increasing adoption of unmanned underwater vehicles (UUVs), and advancements in sonar technology.
Market Drivers
Stable Growth in Military Vessel Deliveries
The steady growth in the deliveries of military vessels is a significant driver for the sonar systems market. Military vessels, equipped with some of the most advanced sonar systems, use these technologies for various applications including mine detection, seabed terrain investigation, anti-submarine warfare, diver detection, and port security. The continuous procurement of such military ships provides favorable conditions for the sonar systems market to expand.
Increasing Adoption of Unmanned Underwater Vehicles (UUVs)
The adoption rate of UUVs is rapidly increasing as these remote-operable devices are used for tasks such as mine detection, seabed terrain investigation, and fish behavioral observation. The compact size and advanced operational capabilities of UUVs present significant opportunities for the sonar systems market.
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Market Challenges
Transition from 2D to 3D Sonar Processing
The shift from 2D to 3D sonar processing for seabed imaging and charting poses a challenge. This transition requires thorough training for personnel to understand and operate the advanced sonar systems effectively, particularly in anti-submarine warfare where detecting, classifying, locating, and tracking submarines demand high technical expertise.
COVID-19 Impact
The COVID-19 pandemic has posed several challenges to the sonar systems market. Budget cuts in the defense sector by various countries have led to delays or cancellation of research projects. Additionally, the export of military and commercial vessels has been reduced, particularly to regions like the Middle East, Africa, and Latin America, affecting the development of sonar systems.
Market Segmentation
The Study Categorizes the Sonar Systems Market Based on Application, Platform, Product, Installation, and Region:
By Application:
Anti-submarine Warfare
Port Security
Mine Detection & Countermeasure Systems
Search & Rescue
Navigation
Diver Detection
Seabed Terrain Investigation
Scientific
Others
By Platform:
Commercial Vessels
Defence Vessels
Unmanned Underwater Vehicles (UUVs)
Aircrafts
Ports
By Product:
Hull-mounted Sonar
Stern-mounted Sonar
Dipping Sonar
Sonobuoy
By Installation:
Fixed
Deployable
By Region:
North America
Asia Pacific
Europe
Middle East
Rest of the World
By Solution
Sonar for Commercial Platforms
Naval sonars, capable of active and passive operations, dominate the market during the forecast period. Passive sonar systems, which do not transmit signals, enable naval vessels to maintain stealth and detect enemy ships and marine animals without revealing their position.
By Installation
Deployable Sonar
Deployable sonar systems, particularly sonobuoys, are expected to command the market. Sonobuoys, which are deployed from aircraft into water, use transducers and radio transmitters to detect and relay underwater echoes. Their use in wide-ranging area zone multi-static surveillance significantly enhances aerial sonar capabilities.
By Platform
Hull-Mounted Sonar
Hull-mounted sonar systems, attached to the bottom of vessels, are extensively used for seabed monitoring, fish finding, anti-submarine warfare, and diver detection. These systems are classified into forward-looking sonar, omnidirectional sonar, and echosounders.
By Technology
Active Sonar
Active sonar, which employs acoustic energy pulses to detect objects, is projected to command the market by technology. These systems measure the distance to objects by calculating the time taken for the sound pulse to travel to the target and back, offering high precision in detecting marine mammals and other objects.
Market Trends
Adoption of Cloud-Based Solutions
The sonar systems market is witnessing a trend towards the adoption of cloud-based solutions. These platforms offer centralized management and enhanced capabilities for real-time data processing, storage, and analysis, driving efficiency and effectiveness in sonar operations.
Integration of Artificial Intelligence (AI)
The integration of AI in sonar systems is revolutionizing the industry. AI-powered sonar systems can autonomously detect, classify, and track underwater objects, significantly enhancing operational capabilities and reducing the reliance on human operators.
Technological Advancements in Sonar Systems
Advancements in sonar technology, such as the development of 3D sonar systems like echosounders, provide real-time three-dimensional views of the seabed and objects present in the water. These innovations are crucial for applications such as seabed mapping, fish finding, and anti-submarine warfare.
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Regional Analysis
Asia Pacific
The Asia Pacific region is projected to contribute the largest share of the sonar system market from 2021 to 2026. This growth is driven by increasing investments in defense and maritime infrastructure, particularly by countries such as China, India, and Japan. The region's focus on enhancing naval capabilities and modernizing existing sonar systems contributes to its dominant market position.
Europe
The European sonar system market is expected to grow at a CAGR of 2.7% during the forecast period, reaching USD 2.6 billion by 2026. The growth in Europe is driven by advancements in sonar technology, increased defense spending, and the rising demand for high-resolution imaging for various applications.
Competitive Landscape
The Sonar Systems Market is dominated by several globally established players, including:
Thales Group (France)
ATLAS ELEKTRONIK GmbH (Germany)
Raytheon Company (US)
Lockheed Martin (US)
L-3 Technologies Inc. (US)
Ultra Electronics (UK)
Other major players in the hydrographic sonar market include Kongsberg Gruppen ASA (Norway), Teledyne Technologies Inc. (US), and Sonardyne (UK). Companies such as Furuno Electric Co., Ltd. (Japan), Japan Radio Company (Japan), Navico (Norway), and FLIR Systems (US) dominate the navigation and fisheries sonar segments.
The Sonar System Market is poised for steady growth, driven by the adoption of advanced sonar systems by naval forces, the increasing use of sonobuoy in defense programs, and the rising demand for high-resolution seabed imaging. Despite challenges posed by the COVID-19 pandemic, the market is projected to reach USD 6.5 billion by 2026, with a CAGR of 1.8%.
Technological advancements, particularly the transition to 3D sonar processing and the integration of AI, are set to transform the industry. The Asia Pacific region is expected to lead the market, supported by significant investments in defense and maritime infrastructure. The competitive landscape is characterized by the presence of several key players, each focusing on innovation and strategic partnerships to enhance their market position.
As the demand for advanced sonar systems continues to grow, the industry is likely to witness further innovations and increased adoption of cutting-edge technologies, driving the market forward in the coming years.
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#Sonar Systems#Sonar Systems Market#Sonar Systems Industry#Global Sonar Systems Market#Sonar Systems Market Companies#Sonar Systems Market Size#Sonar Systems Market Share#Sonar Systems Market Growth#Sonar Systems Market Statistics
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SONAR System Market Analysis. share 2029
The SONAR system market size is predicted to reach USD 3.76 billion by 2029 and exhibit a CAGR of 7.96% during the projected period. Fortune Business Insights has presented this information in its report titled, “SONAR System Market, 2023-2029”. The market stood at USD 2.09 billion in 2021 and USD 2.20 billion in 2023. Sound Navigation and Ranging (SONAR) is a sophisticated technique that uses sound propagation to navigate and communicate with underwater objects.
List of Key Market Players:
ASELSAN A.Ĺž. (Turkey)
ATLAS ELEKTRONIK INDIA Pvt. Ltd. (India)
DSIT Solutions Ltd. (Israel)
EdgeTech (U.S.)
FURUNO ELECTRIC CO., LTD. (Japan)
Japan Radio Co. (Japan)
KONGSBERG (Norway)
Lockheed Martin Corporation (U.S.)
L3Harris Technologies, Inc. (U.S.)
NAVICO (Norway)
Raytheon Technologies Corporation (U.S.)
SONARDYNE (U.K)
Teledyne Technologies Incorporated. (U.S.)
Thales Group (France)
Ultra (U.K)
Browse Detailed Summary of Research Report with TOC:
Russia–Ukraine War Impact
Russian and Ukrainian ports are the primary export destinations for crude oil, wheat, and corn. The current conflict has halted cargo import and export via the sea, resulting in sluggish growth in the marine sector. Several European countries, on the other hand, have increased their defense budgets in 2022 in response to NATO recommendations. NATO has advised countries to increase their defense budgets to 2% of their GDP. For example, officials in Poland have declared that the defense budget will be increased to 2% of its GDP in 2022 and 3% of GDP in 2023. The increased defense budget is expected to increase naval vessel procurement, supporting the market growth.
Segments-
On the basis of product type, the market is divided into sonobuoy, stern-mounted, hull-mounted, and DDS. On the basis of application, the market is split into defense and commercial. On the basis of platform, the market is divided into airborne and ship type. On the basis of solution, the market is divided into hardware (control units, transmitter and receiver, displays sensors, which is further divided into ultrasonic diffuse proximity sensors, VME-ADC, ultrasonic through-beam sensors, ultrasonic retro-reflective sensors, and others), and software. On the basis of end-user, the market is bifurcated into retrofit and line fit. Geographically, the market is classified into Europe, North America, Asia Pacific, and the Rest of the World.
Report Coverage-
The research report provides a thorough examination of the market. It focuses on key aspects such as leading companies, various platforms, product types, solutions, and SONAR system applications. Apart from that, the report provides insights into market trends and highlights important industry developments. In addition to the aforementioned factors, the report includes a number of factors that have contributed to the development of the developed market in recent years.
Drivers & Restraints-
Tactical Defense Operations Are Surging the Demand for Sonobuoys
A sonobuoy is a sophisticated underwater acoustic research system that naval ships drop or eject. Sonobuoys use a sophisticated transducer and a radio transmitter to record and transmit underwater sounds. Other environmental data, such as wave height and water temperature, are also provided by special-purpose buoys. The market is expected to expand as the use of sonobuoys in military vessels expands. However, the steep cost associated with SONAR development may impede the SONAR system market growth.
Regional Insights-
North America to be a Dominant Region of the Global Market
North America dominated the market in 2021, with market size of USD 665.5 million. North America's dominance is owing to the rise in naval shipbuilding in the U.S. 82 new ships costing up to USD 147 billion will be added in the U.S. between 2022 - 2026, according to a shipbuilding plan announced in 2020.
Asia Pacific will experience remarkable growth as a result of increased naval spending and an increase in domestic ship manufacturing in China and South Korea. Ship deliveries in Japan have grown and various South Korean shipbuilding players have integrated automation into ship systems to drive the market development.
As the SONAR system market share increases in Europe, this is largely driven by the introduction of a new generation of threat detection and identification capabilities in ships and the retrofitting of vessels with autonomous engineering systems. Increased investment in marine system upgrades is anticipated to fuel the market in the U.K.
Competitive Landscape-
The dominant factor responsible for these key market players' dominance is a diverse product portfolio combined with R&D activity. Impact Subsea will launch the ISS360 SONAR, the world's tiniest imaging SONAR, in March 2020. It has a capacity of up to 90 meters/295 feet and provides excellent image quality.
Key Industry Development-
February 2022:Â Leonardo SpA awarded ELAC SONAR a USD 58 million contract to supply SONAR systems for two new submarines supplied by Fincantieri for the Italian Navy.
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Sonobuoy Market Growth Leaders, Key Opportunities & On-going Trends
Sonobuoy Market by Technology (BT, SAR, DICASS, DLC, DIFAR, LOFAR, EER, ADAR, VLAD), Function (Active, Passive, Special Purpose), By Application (Defense, Commercial), Size (A, B, C), Deployment (Spring, Pneumatic, Free Fall, Cartridge) and region (North America, Europe, Asia-Pacific, Middle East and Africa and South America)
The global market for Sonobuoy estimated at USD 287.4 Million in the year 2020, is projected to reach a CAGR of 6.6% over the analysis period 2020-2028.
A sonobuoy (a portmanteau of sonar and buoy) is a relatively small buoy (typically 13 cm or 5 in, in diameter and 91 cm or 3 ft long) expendable sonar system that is dropped/ejected from aircraft or ships conducting anti-submarine warfare or underwater acoustic research. A tactical sonar system for transmitting submarine activity, the sonobuoy is a core technology for anti-submarine warfare.
Significant growth in the maritime industry across the globe, the increasing adoption of sonobuoys to detect the presence of other submarines and monitor underwater seismic wave are some of the factors that have supported long-term expansion for Sonobuoy Market.
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Regional Analysis
North America is the largest demand region (sales value share 68% in 2017). Sonobuoy product demand is in a certain space, and the main consumer countries are moderately developed countries and developed countries.
Competitive Landscape
Key Players
ERAPSCO (joint venture between Sparton Corporation and Ultra Electronics USSI)
Radixon
Thales Group
Sealandaire Technologies, Inc.
General Dynamics Corporation
Lockheed Martin Corporation
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Recent Developments
Naval Air Systems Command at Patuxent River Naval Air Station, Md. announced an order worth US$ 71.3 Mn for multi-static sonobuoys for airborne ASW operations. The order, placed on 28th July 2021, is to ERAPSCO in Columbia City, Ind., for 20,000 AN/SSQ-125 multi-static sonobuoys.
Northrop Grumman has partnered with sonobuoy designer Ultra Electronics to advance its efforts in creating sonobuoy dispensers for ship-based unmanned aerial vehicles (UAVs). Engineers at Northrop Grumman are testing the feasibility of its MQ-8B Fire Scout unmanned helicopter to carry as many as 40 sonobuoys on a mission. The prototype was recently tested off the coast of California in a mock combat scenario.
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Report Scope
Sonobuoy Market is segmented into function, application, technology, deployment and region.
On the basis of Function
Active
Passive
Special Purpose
On the basis of Application
Defence
civil
On the basis of Technology Â
Bathythermo Buoy,
Search & Rescue Buoy
Directional Command Activated
Data Link Communications
Directional Frequency Analysis and Recording
Low Frequency Analysis and Recording
Extended Echo Ranging
Air Deployable Active Receiver
Vertical Line Array Directional Frequency Analysis and Recording
On the basis of Deployment
Spring
Pneumatic
Free-fall
Cartridge
On the basis of Region
Asia Pacific
North America
Europe
South America
Middle East & Africa
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Sonobuoys Market 2023 | Growth Prospects, Future Trends, Global Share and Size Forecast by Regions, and Industry Revenue Analysis till 2028
The demand and supply of sonobuoys, which are underwater acoustic devices used for detecting, locating, and categorising undersea sounds, particularly submarines, are referred to as the sonobuoy market. Military forces, oil and gas firms, and scientific research groups all employ sonobuoys for a variety of applications including underwater surveillance, anti-submarine warfare, underwater mapping, and environmental monitoring.
The increasing requirement for underwater surveillance and reconnaissance in military operations, the expanding need for hydrocarbon exploration and production, and the rise of the offshore energy sector are driving demand for sonobuoys. The development of new and better sonobuoy technologies, as well as the rising demand for cost-effective and dependable underwater surveillance systems, are also propelling the sonobuoy market forward.
Ultra Electronics, Lockheed Martin, and OCEANWORKS are among the companies involved in the manufacture and supply of sonobuoys, and they are investing in research and development to increase the performance and capabilities of their products.
However, the market faces obstacles due to the expensive cost of sonobuoys and the severe regulatory regulations involved with their use. The lack of proper launch and recovery technologies, as well as the necessity for specialist trained personnel, are major challenges restricting the growth of the sonobuoy market.
To summarise, the sonobuoy industry is likely to expand in the future years, driven by increased demand from military and commercial customers, but high costs and rigorous regulations are obstacles that must be solved.
Read more@ https://techinforite.blogspot.com/2023/02/sonobuoys-market-report-2023-size-share.html
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EXCLUSIVE from a #NordStreamSabotage whistleblower
Kim Dot Com was contacted by this whistleblower and was asked to publish this thread. He reviewed the radar evidence and it creates a compelling case of the US Govt blowing up the NordStream pipelines. There is no question in his mind that Joe Biden ordered this act of terrorism.
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EXCLUSIVE from a #NordStreamSabotage whistleblower: I am writing to you as a concerned citizen of the world, wishing for a peaceful resolution to the conflict in Ukraine. My identity is not of importance. What matters is the sharing of my story so that the world can understand the truth about the Nord Stream Sabotage, thereby moving forward without lies or inaccuracies. As many of you may know, a series of clandestine bombings and subsequent underwater gas leaks occurred on the Nord Stream 1 and Nord Stream 2 natural gas pipelines on September 26, 2022. While there has been much speculation about the nature of this sabotage, I aim to provide additional details and facts that will give a clearer picture. Before the attacks on September 11, 2001, I started working with contractors at the Johns Hopkins Applied Physics Lab in Maryland. We were working on the Advanced Seal Delivery System (ASDS), a covert mini-submarine designed for the Navy Seals to carry out stealthy clandestine missions. This submarine is transported on the back of nuclear submarines and detaches to execute its missions. I was chosen to work on this project, and my role was to assist in the programming of the full-sized, temperature-controlled simulator for the submarine on which the Navy Seals would train. The simulator featured screens that displayed a 3D simulation of the ASDS undocking from a nuclear submarine, executing its mission, and then returning to dock. I spent countless hours in the simulator, ensuring everything functioned as specified. I piloted the simulator on simulated missions, just like the Navy Seal pilots would before their actual missions. Even in 2001, we had the ability to program a variety of scenarios, including the sabotaging of pipelines. Although I did not pilot a simulated mission specifically for the Nord Stream pipelines, I did simulate scenarios of covertly sabotaging pipelines. I can confirm that the United States has had this capability for decades, and the ASDS is in the US inventory, fully capable of executing the Nord Stream Sabotage. Publicly available radar evidence from http://flightradar24.com helps shine light on how the Nordstream sabotage was conducted. As exposed by Seymour Hersh, the explosives were planted during the Baltops 22 maritime exercises. Although speculation remains as to the exact method of explosives placement, I believe that the modern Advanced Seal Delivery System (ASDS) was utilized with Navy divers. This mirrors the way I would have conducted the mission in the simulator.
Once the explosives were planted, they would be triggered by sonobuoy. On September 25, at roughly 10:52 pm UTC, a US Navy Sikorsky MH-60R Seahawk appeared on radar in the Baltic Sea, east of Bornholm Island. Radar data indicates that this state-of-the-art helicopter, equipped with sonobuoy, had been hovering for an indeterminate length of time. Within clear range of the explosion, the US Navy Sikorsky is seen on radar loitering before, during, and after the explosion, until approximately 1:43 am UTC when it goes off radar in the Baltic, having hovered for over three hours in darkness. This helicopter was present at the scene of the explosion before, during, and after the event, equipped with sonobuoy capable of triggering the explosion.Â
Meanwhile, on September 25, at roughly 11:28 pm UTC, a US Navy Boeing P-8A Poseidon equipped with sonobuoy and with NO CALLSIGN appeared on radar east of the Faroe Islands. This Boeing P-8A Poseidon headed directly to the site of the first Nord Stream explosion near Bornholm Island, reaching an observational point at 1:08 am UTC on September 26, just over one hour after the first explosion at 12:03 am UTC. Important: The P-8A Poseidon took off >BEFORE< the first explosion and was heading to the coordinates were the explosion would occur.Â
At this juncture, the Poseidon had completed the first part of its mission, confirming the detonation of the explosives. It then flew over land near Miastko and rendezvoused with a US Air Force Boeing KC-135R Stratotanker for in-air refueling at 1:20 am UTC on September 26. The Poseidon circled with the Stratotanker until 2:28 am UTC, after which it was ready to complete the second part of its mission. It returned to the first explosion site for observation at 2:42 am UTC. It then made a tight loop at a low altitude, around 24,000 ft, directly above the explosion site for optimal observation. Afterward, it descended to a very low altitude of 7,275 ft in tight loops until it disappeared from radar at roughly 3:05 am UTC. At this point, the Poseidon likely dropped a sonobuoy to initiate the countdown for the second wave of explosions, which would occur approximately 14 hours later.Â
The same US Navy Boeing P-8A Poseidon with no callsign reappeared on radar at 6:22 am UTC on September 26, east of Bornholm Island. It flew to the site of the first explosion for a second look at 7:00 am UTC, then flew back and disappeared from radar at roughly 9:04 am UTC east of the Faroe Islands.Â
After the second wave of explosions at 5:03 pm UTC on September 26, the original US Navy Sikorsky MH-60R Seahawk reappeared on radar in the Baltic at roughly 6:42 pm UTC. It then hovered for over two hours until approximately 8:50 pm UTC, at which point it went off radar. During this time, it had an observational view of the aftermath of the second wave of explosions.Â
How the US blew up the Nordstream pipelines (Radar Evidence). I urge the public to review the publicly available radar data for themselves and witness the events as they unfolded, as it is easily verifiable. - ASDS EngineerÂ
youtube.com/watch?v=iG71NGXr4vUÂ
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