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Internet of Things (IoT) Smart Meter Market Trends, Growing Technology, Opportunities 2024-2032
The Reports and Insights, a leading market research company, has recently releases report titled “Internet of Things (IoT) Smart Meter Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Internet of Things (IoT) Smart Meter Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Internet of Things (IoT) Smart Meter Market?
The internet of things (IOT) smart meter market is expected to grow at a CAGR of 12.5% during the forecast period of 2024 to 2032.
What are Internet of Things (IoT) Smart Meter?
An Internet of Things (IoT) smart meter is a device used for measuring and recording the consumption of utilities like electricity, gas, or water. It communicates this data wirelessly to a central system for monitoring and billing purposes. These smart meters enable two-way communication between the utility provider and the consumer, allowing for real-time monitoring of energy or water usage. They offer features such as remote reading, automated billing, and the ability to detect and report issues like leaks or outages. IoT smart meters are essential for more efficient resource management, improved service reliability, and the integration of renewable energy sources into the grid.
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What are the growth prospects and trends in the Internet of Things (IoT) Smart Meter industry?
The internet of things (IoT) smart meters market growth driven by various factors and drivers. The market for Internet of Things (IoT) smart meters is experiencing significant expansion, fueled by the growing uptake of smart grid technologies and the increasing need for effective energy management solutions. These smart meters provide advantages like real-time monitoring, remote reading, and automated billing, leading to their deployment in residential, commercial, and industrial settings. Government programs aimed at modernizing utility infrastructure and encouraging energy conservation are also driving market growth. However, challenges such as data privacy issues and the high cost of installation may impede growth to some degree. Hence, all these factors contribute to internet of things (IoT) smart meters market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
Product Type:
Electricity Smart Meters
Water Smart Meters
Gas Smart Meters
Communication Technology:
Wired Smart Meters
Wireless Smart Meters
Component:
Hardware
Software
Services
End-User:
Residential
Commercial
Industrial
Application:
Energy Consumption Monitoring
Load Management
Billing and Payment Management
Remote Disconnect/Reconnect
Demand Response
Others
Meter Type:
Advanced Metering Infrastructure (AMI)
Automatic Meter Reading (AMR)
Connectivity:
Cellular Network
Power Line Communication (PLC)
Radio Frequency (RF)
Others
Deployment:
Retrofit
New Installation
Customer Type:
Investor-Owned Utilities (IOUs)
Public Utilities
Cooperative Utilitie
Meter Phase:
Single Phase
Three Phase
Power Source:
Battery-Powered
Hardwired
Application Area:
Residential Buildings
Commercial Buildings
Industrial Building
Meter Data Management (MDM) Solutions:
Data Collection
Data Storage
Data Analysis
Data Visualization
Service Model:
Managed Services
Professional Services
Sales Channel:
Direct Sales
Indirect Sales
Report Segmentation:
North America:
United States
Canada
Europe:
Germany
United Kingdom
France
Italy
Spain
Russia
Poland
BENELUX
NORDIC
Rest of Europe
Asia Pacific:
China
Japan
India
South Korea
ASEAN
Australia & New Zealand
Rest of Asia Pacific
Latin America:
Brazil
Mexico
Argentina
Rest of Latin America
Middle East & Africa:
Saudi Arabia
South Africa
United Arab Emirates
Israel
Egypt
Rest of MEA
Who are the key players operating in the industry?
The report covers the major market players including:
Siemens AG
Landis+Gyr
Itron Inc.
Schneider Electric SE
Honeywell International Inc.
Aclara Technologies LLC
Kamstrup A/S
Iskraemeco
Badger Meter, Inc.
Sensus (Xylem Inc.)
Elster Group GmbH (Honeywell International Inc.)
ICSA (India) Limited
Jiangsu Linyang Energy Co., Ltd.
Neptune Technology Group Inc.
Holley Technology Ltd.
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#Internet of Things (IoT) Smart Meter Market share#Internet of Things (IoT) Smart Meter Market size#Internet of Things (IoT) Smart Meter Market trends
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Data Bridge Market Research analyses that the consumer internet of things (IoT) market which was USD 5,519.65 million in 2022, is expected to reach USD 287,15.32 million by 2030, and is expected to undergo a CAGR of 17.93% during the forecast period. This indicates that the market value. “Hardware” dominates the type segment of the consumer internet of things (IoT) market owing to the high demand of this type in the market. In addition to the market insights such as market value, growth rate, market segments, geographical coverage, market players, and market scenario, the market report curated by the Data Bridge Market Research team includes in-depth expert analysis, import/export analysis, pricing analysis, production consumption analysis, and pestle analysis.
#Consumer Internet of Things (IoT) Market#Consumer Internet of Things (IoT) Market Share#Consumer Internet of Things (IoT) Market Size#Consumer Internet of Things (IoT) Market Growth#Consumer Internet of Things (IoT) Market Trends#Consumer Internet of Things (IoT) Market Players.
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Printed Circuit Boards (PCBs) Market Analysis, Key Players, Share Dynamic Demand and Consumption to 2032
The printed circuit boards (PCBs) market refers to the industry involved in the design, production, and sale of PCBs, which are essential components in electronic devices. PCBs provide a platform for interconnecting and supporting various electronic components, such as integrated circuits (ICs), resistors, capacitors, and connectors.
printed circuit board market size is expected to increase USD 3.60 billion by 2032 and Growth Rate from 2023 CAGR of 3.9% Forecast Period 2023 To 2032
Here are some key points about the PCBs market:
Market Size and Growth: The PCBs market has experienced significant growth in recent years. Factors driving this growth include the increasing demand for consumer electronics, telecommunications equipment, automotive electronics, industrial automation, and healthcare devices. The proliferation of smart devices, Internet of Things (IoT) applications, and advancements in technologies like 5G and artificial intelligence also contribute to the expanding PCBs market.
Types of PCBs: PCBs come in different types, including single-sided, double-sided, multi-layered, rigid, flexible, and rigid-flex PCBs. Each type has its specific applications and advantages. For instance, flexible PCBs are used in wearable devices and applications where flexibility and compactness are essential, while multi-layered PCBs are commonly found in complex electronic systems like smartphones and computers.
Manufacturing Process: PCB manufacturing involves several steps, including design, substrate selection, copper etching, solder mask application, and component assembly. The industry has seen advancements in manufacturing techniques such as surface-mount technology (SMT) and advanced packaging, enabling smaller and more complex PCB designs.
Market Players: The PCBs market is highly competitive, with numerous manufacturers operating globally. Some of the key players in the industry include Nippon Mektron Ltd., Unimicron Technology Corp., Zhen Ding Technology Holding Limited, Tripod Technology Corporation, Samsung Electro-Mechanics Co., Ltd., and TTM Technologies, Inc. These companies offer a wide range of PCB products and services to cater to different industries and customer requirements.
Regional Market: Asia-Pacific dominates the global PCBs market, primarily due to the presence of major electronics manufacturing hubs in countries like China, Japan, South Korea, and Taiwan. These countries are known for their strong electronics industry, which drives the demand for PCBs. North America and Europe also contribute significantly to the market due to their established electronics and automotive sectors.
Emerging Trends: The PCBs market is influenced by several emerging trends. These include the miniaturization of electronic devices, the adoption of advanced materials and technologies for higher performance and reliability, the shift towards environmentally friendly and lead-free PCBs, and the growing demand for high-speed and high-frequency PCBs to support advanced applications.
It's worth noting that the PCBs market is subject to various factors, including technological advancements, regulatory requirements, supply chain dynamics, and customer demand. To obtain the most accurate and up-to-date information on the market, it's advisable to refer to industry reports, market research studies, and publications specific to the PCBs market.
I recommend referring to our Stringent datalytics firm, industry publications, and websites that specialize in providing market reports. These sources often offer comprehensive analysis, market trends, growth forecasts, competitive landscape, and other valuable insights into the humidity sensors market.
By visiting our website or contacting us directly, you can explore the availability of specific reports related to the humidity sensors market. These reports often require a purchase or subscription, but we provide comprehensive and in-depth information that can be valuable for businesses, investors, and individuals interested in the market.
Remember to look for recent reports to ensure you have the most current and relevant information.
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Market Segmentations: Global Printed Circuit Boards (PCBs) Market: By Company • AT&S • Nippon Mektron • Unimicron • Samsung • Dynamic Electronics • Daeduck Electronics • CMK Corporation • Nan Ya PCB Co. • TTM Technologies • Shenzhen Kinwong Electronic Global Printed Circuit Boards (PCBs) Market: By Type • Single-sided • Double-sided • Multi-layer Global Printed Circuit Boards (PCBs) Market: By Application • Consumer Electronics • Aerospace and Defense • Automotive • Healthcare • Others Global Printed Circuit Boards (PCBs) Market: Regional Analysis All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Printed Circuit Boards (PCBs) market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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• To comprehend consumer behaviour: these research studies can offer insightful information about customer behaviour, including preferences, spending patterns, and demographics.
• To assess market opportunities: These research studies can aid companies in assessing market chances, such as prospective new goods or services, fresh markets, and new trends.
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#Printed Circuit Boards (PCBs) Market Analysis#Key Players#Share Dynamic Demand and Consumption to 2032#The printed circuit boards (PCBs) market refers to the industry involved in the design#production#and sale of PCBs#which are essential components in electronic devices. PCBs provide a platform for interconnecting and supporting various electronic compone#such as integrated circuits (ICs)#resistors#capacitors#and connectors.#printed circuit board market size is expected to increase USD 3.60 billion by 2032 and Growth Rate from 2023 CAGR of 3.9% Forecast Period#Here are some key points about the PCBs market:#1.#Market Size and Growth: The PCBs market has experienced significant growth in recent years. Factors driving this growth include the increas#telecommunications equipment#automotive electronics#industrial automation#and healthcare devices. The proliferation of smart devices#Internet of Things (IoT) applications#and advancements in technologies like 5G and artificial intelligence also contribute to the expanding PCBs market.#2.#Types of PCBs: PCBs come in different types#including single-sided#double-sided#multi-layered#rigid#flexible#and rigid-flex PCBs. Each type has its specific applications and advantages. For instance#flexible PCBs are used in wearable devices and applications where flexibility and compactness are essential
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The Global Internet of Things (IoT) in Oil and Gas Market is projected to grow at a CAGR of around 23% during the forecast period, i.e., 2023-28. The market growth attributes to the surging demand of IoT in enhancing the operational efficiency of the oil & gas industry to accomplish energy requirements. In addition to this, the increasing threat of cyber-attacks and the decline in the availability of skilled labor in the oil and gas industry are other major factors fueling the market growth. Further, the mounting requirement of oil and gas companies to access real-time information across all locations leads to an increase in the demand for integrating IoT in oil & gas industries, thereby boosting the market growth.
#Internet of Things (IoT) in Oil and Gas Market#Internet of Things (IoT) in Oil and Gas Market growth#Internet of Things (IoT) in Oil and Gas Market size#Internet of Things (IoT) in Oil and Gas Market industry
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#Internet of Things (IoT) Security Market#Internet of Things (IoT) Security Market scope#Internet of Things (IoT) Security Market size#Internet of Things (IoT) Security Market share#Internet of Things (IoT) Security Market trend
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Connected Car Market To Reach USD 245,739 Million by 2030
The size of the connected car market was USD 64,061 million in 2022, and it will advance at a CAGR of 18.30% in the years to come, to reach USD 245,739 million by 2030, as stated by a market research company, P&S Intelligence. Driver assistance service dominated the industry. This has a lot to do with the large-scale incorporation of cutting-edge driver assistance systems in automobiles,…
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#Advanced Driver Assistance Systems (ADAS)#Connected Car#Connected car ecosystem#Connected Car Market Growth#Connected car market size#Connected car technology#In-car connectivity#Internet of Things (IoT)#Telematics#V2X communication
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Author: CrimethInc. Topic: technology
“The future is already here,” Cyberpunk pioneer William Gibson once said; “it’s just not very evenly distributed.” Over the intervening decades, many people have repurposed that quote to suit their needs. Today, in that tradition, we might refine it thus: War is already here—it’s just not very evenly distributed.
Never again will the battlefield be just state versus state; it hasn’t been for some time. Nor are we seeing simple conflicts that pit a state versus a unitary insurgent that aspires to statehood. Today’s wars feature belligerents of all shapes and sizes: states (allied and non-allied), religious zealots (with or without a state), local and expatriate insurgents, loyalists to former or failing or neighboring regimes, individuals with a political mission or personal agenda, and agents of chaos who benefit from the instability of war itself. Anyone or any group of any size can go to war.
The increased accessibility of the technology of disruption and war[1] means the barrier to entry is getting lower all the time. The structure of future wars will sometimes feel familiar, as men with guns murder children and bombs level entire neighborhoods—but it will take new forms, too. Combatants will manipulate markets and devalue currencies. Websites will be subject to DDoS attacks and disabling—both by adversaries and by ruling governments. Infrastructure and services like hospitals, banks, transit systems, and HVAC systems will all be vulnerable to attacks and interruptions.
In this chaotic world, in which new and increasing threats ceaselessly menace our freedom, technology has become an essential battlefield. Here at the CrimethInc. technology desk, we will intervene in the discourse and distribution of technological know-how in hopes of enabling readers like you to defend and expand your autonomy. Let’s take a glance at the terrain.
Privacy
The NSA listens to, reads, and records everything that happens on the internet.
Amazon, Google, and Apple are always listening[2] and sending some amount[3] of what they hear back to their corporate data centers[4]. Cops want that data. Uber, Lyft, Waze, Tesla, Apple, Google, and Facebook know your whereabouts and your movements all of the time. Employees spy on users.
Police[5] want access to the contents of your phone, computer, and social media accounts—whether you’re a suspected criminal, a dissident on a watch list, or an ex-wife.
The business model of most tech companies is surveillance capitalism. Companies learn everything possible about you when you use their free app or website, then sell your data to governments, police, and advertisers. There’s even a company named Palantir, after the crystal ball in The Lord of the Rings that the wizard Saruman used to gaze upon Mordor—through which Mordor gazed into Saruman and corrupted him.[6] Nietzsche’s famous quote, “When you look long into an abyss, the abyss also looks into you,” now sounds like a double transcription error: surely he didn’t mean abyss, but app.
Security
Self-replicating malware spreads across Internet of Things (IoT) devices like “smart” light bulbs and nanny cams, conscripting them into massive botnets. The people who remotely control the malware then use these light bulbs and security cameras to launch debilitating DDoS[7] attacks against DNS providers, reporters, and entire countries.
Hackers use ransomware to hold colleges, hospitals, and transit systems hostage. Everything leaks, from nude photos on celebrities’ phones to the emails of US political parties.
Capital
Eight billionaires combined own as much wealth as the poorest 50% of the world’s population. Four of those eight billionaires are tech company founders.[8] Recently, the President of the United States gathered a group of executives to increase collaboration between the tech industry and the government.[9]
The tech industry in general, and the Silicon Valley in particular, has a disproportionately large cultural influence. The tech industry is fundamentally tied to liberalism and therefore to capitalism. Even the most left-leaning technologists aren’t interested in addressing the drawbacks of the social order that has concentrated so much power in their hands.[10]
War
Nation states are already engaging in cyber warfare. Someone somewhere[11] has been learning how to take down the internet.
Tech companies are best positioned to create a registry of Muslims and other targeted groups. Even if George W. Bush and Barack Obama hadn’t already created such lists and deported millions of people, if Donald Trump (or any president) wanted to create a registry for roundups and deportations, all he’d have to do is go to Facebook. Facebook knows everything about you.
The Obama administration built the largest surveillance infrastructure ever—Donald Trump’s administration just inherited it. Liberal democracies and fascist autocracies share the same love affair with surveillance. As liberalism collapses, the rise of autocracy coincides with the greatest technical capacity for spying in history, with the least cost or effort. It’s a perfect storm.
This brief overview doesn’t even mention artificial intelligence (AI), machine learning, virtual reality (VR), augmented reality (AR), robots, the venture capital system, or tech billionaires who think they can live forever with transfusions of the blood of young people.
Here at the tech desk, we’ll examine technology and its effects from an anarchist perspective. We’ll publish accessible guides and overviews on topics like encryption, operational security, and how to strengthen your defenses for everyday life and street battles. We’ll zoom out to explore the relation between technology, the state, and capitalism—and a whole lot more. Stay tuned.
Footnotes
[1] A surplus of AK-47s. Tanks left behind by U.S. military. Malware infected networked computer transformed into DDoS botnets. Off the shelf ready to execute scripts to attack servers.
[2] Amazon Echo / Alexa. Google with Google Home. Apple with Siri. Hey Siri, start playing music.
[3] What, how much, stored for how long, and accessible by whom are all unknown to the people using those services.
[4] Unless you are a very large company, “data center” means someone else’s computer sitting in someone else’s building.
[5] Local beat cops and police chiefs, TSA, Border Patrol, FBI… all the fuckers.
[6] Expect to read more about Palantir and others in a forthcoming article about surveillance capitalism.
[7] Distributed Denial of Service. More on this in a later article, as well.
[8] Bill Gates, Jeff Bezos, Mark Zuckerberg, Larry Ellison. In fact, if you count Michael Bloomberg as a technology company, that makes five.
[9] In attendance: Eric Trump. Brad Smith, Microsoft president and chief legal officer. Jeff Bezos, Amazon founder and CEO. Larry Page, Google founder and Alphabet CEO. Sheryl Sandberg, Facebook COO. Mike Pence. Donald Trump. Peter Thiel, venture capitalist. Tim Cook, Apple CEO. Safra Catz, Oracle CEO. Elon Musk, Tesla CEO. Gary Cohn, Goldman Sachs president and Trump’s chief economic adviser. Wilbur Ross, Trump’s commerce secretary pick. Stephen Miller, senior policy adviser. Satya Nadella, Microsoft CEO. Ginni Rometty, IBM CEO. Chuck Robbins, Cisco CEO. Jared Kushner, investor and Trump’s son-in-law. Reince Priebus, chairman of the Republican National Committee and White House chief of staff. Steve Bannon, chief strategist to Trump. Eric Schmidt, Alphabet president. Alex Karp, Palantir CEO. Brian Krzanich, Intel CEO.
[10] We’ll explore this more in a later article about “The California Ideology.”
[11] Probably a state-level actor such as Russia or China.
#technology#Privacy#Security#Capital#War#anarchism#anarchy#anarchist society#practical anarchy#practical anarchism#resistance#autonomy#revolution#communism#anti capitalist#anti capitalism#late stage capitalism#daily posts#libraries#leftism#social issues#anarchy works#anarchist library#survival#freedom
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Vertical Farming Market Recent Trends and Growth Analysis Report 2024 – 2030
The global vertical farming market size is expected to reach USD USD 24.95 billion by 2030, according to a new report by Grand View Research, Inc. It is expected to expand at a CAGR of 20.1% from 2023 to 2030. Increased use of Internet of Things (IoT) sensors for producing crops is likely to spur market demand over the forecast period. Information obtained from the sensors is stored on the cloud and analyzed to perform the required actions. The growing automation in agriculture and increasing use of big data and predictive analytics for maximizing yields are also likely to drive the market.
Vertical farming is effective in ensuring stability in crop production and maintaining reliability even in adverse climatic conditions. It provides multiple benefits over the traditional farming technique, such as less use of water, the lesser need for agrochemicals, and low dependence on agricultural labor. Vertical farming makes use of metal reflectors and artificial lighting to maximize natural sunlight.
Genetically modified organisms and the environmental and health effects of pesticides and other non-natural substances that are used for increasing agricultural production have encouraged consumers to adopt organic foods. According to the Organic Trade Association, the U.S. organic industry sales increased by around 5% in 2019 owing to the increased investment in infrastructure and education. As per the Organic Foods Production Act of 1990, the handlers and growers of organic products need to comply with the regulations.
Gather more insights about the market drivers, restrains and growth of the Vertical Farming Market
Detailed Segmentation:
Market Concentration & Characteristics
The vertical farming market growth stage is high. The vertical farming market is witnessing a significant degree of innovation, marked by the adoption of advanced technologies such as sensors and cameras in order to enhance resource efficiency, increase yields, and address challenges such as limited space and environmental constraints. Also, technologies such as hydroponics, aeroponics, LED grow lights, and automation systems are commonly employed to enhance efficiency and crop quality.
Market Dynamics
The growth of the vertical farming market is attributed to factors such as steady population growth, government incentives, limited availability of cultivable land, and the increasing demand for high-quality and fresh food. Moreover, the increasing consumer demand for organic food is positively impacting the growth of the vertical farming market, creating favorable business opportunities. With consumers placing a higher value on organic products, vertical farming is a viable solution to meet this demand.
Component Insights
On the basis of components, vertical farming market is segmented into hardware, software, and services. The hardware segment accounted for the largest market share in 2022. Hardware plays a significant role in maintaining an environment in vertical farming. The segment is further categorized into lighting, hydroponic components, climate control, and sensors. The lighting segment led the market and accounted for more than 44.46% of global hardware revenue in 2022. A large share of the lighting segment can be attributed to the dependence of vertical farms on artificial lighting. Artificial lights provide sufficient light intensities required for crop growth. The climate control segment is expected to register the highest CAGR of 20.6% over forecast period. Increasing adoption of hydroponic components by farmers to minimize weight load and infrastructure needed to support equipment is anticipated to drive demand for hydroponic components.
Growing Mechanism Insights
The Hydroponics segment registered the largest market share in 2022 and is expected to remain dominant between 2023 and 2030. Hydroponics is a popular growth mechanism due to low installation costs and ease of operations. It is a method of growing plants without soil, where soil is replaced by mineral solution inserted around plant roots. Additionally, the hydroponics method removes the risk of soil organisms causing diseases.
Crop Category Insights
The fruits, vegetables, & herbs segment registered the largest market share in 2022 and is expected to remain dominant between 2023 and 2030. Increasing cultivation of commonly grown fruits and vegetables in vertical farming is driving segment growth. Crops grown in vertical farming provide maximum profit to companies involved in their cultivation. At the same time, vertical farming improves biodiversity as it does not cause land disturbances. As such, vertical farming is in high demand for growing different types of crops. Further, fruits, vegetables, & herbs are segmented into tomato, lettuce, bell, chili peppers, strawberry, cucumber, leafy greens (excluding lettuce), herbs, and others. Among which tomatoes segment led the market and accounted for more than 24.23% of global fruits, vegetables, & herbs revenue in 2022.
Structure Insights
The shipping container segment dominated the market with a share of about 53.32% in 2022 and is expected to remain dominant between 2023 and 2030. This growth is attributed to the ability of structure to help grow crops irrespective of geographic location. One of the primary benefits of container-based farming is that container farms are easy to transport, and one doesn't require a large piece of land or dedicated building to start cultivating.
Regional Insights
In terms of revenue, Europe dominated the vertical farming market in 2022 with a share of approximately 31.7% and is expected to remain dominant between 2023 and 2030. Growing awareness regarding the importance of alternative farming owing to less availability of fertile agricultural land and increasing population in the region is the key factor anticipated to spur the demand.
Browse through Grand View Research's Next Generation Technologies Industry Research Reports.
• The global synthetic data generation market size was valued at USD 218.4 million in 2023 and is projected to grow at a CAGR of 35.3% from 2024 to 2030.
• The global service virtualization market size was valued at USD 786.0 Million in 2023 and is projected to grow at a compound annual growth rate (CAGR) of 17.4% from 2024 to 2030.
Key Companies & Market Share Insights
Some of the key players operating in the market include Agrilution GmbH; Aerofarm; Brightfarms Inc.; Everlight Electronics Co., Ltd; Freight Farms; GrowUp Urban Farms Ltd.; Green Sense Farms, LLC; Vertical Farm Systems.
• Vertical Farm Systems is engaged in the development of fully automated growing systems with reusable medium and energy efficient climate cells. The company utilizes artificial intelligence (AI) and automation for optimized growing conditions.
• Brightfarms Inc., is an indoor farming company that provides fresh packaged salad. The company sells their product locally that are grown in controlled environment. The company is inclined towards development of efficient vertical farming system with a focus on resource efficiency and sustainable practices.
Key Vertical Farming Companies:
• AeroFarms (U.S.)
• Illumitex, Inc. (U.S.)
• American Hydroponics (U.S.)
• Agrilution GmbH
• Brightfarms Inc.
• Everlight Electronics Co., Ltd.
• Freight Farms
• GrowUp Urban Farms Ltd.
• Green Sense Farms, LLC
• Vertical Farm Systems.
Vertical Farming Market Segmentation
Grand View Research has segmented the global vertical farming market report based on structure, growing mechanism, crop category and region
Vertical Farming Structure Outlook (Revenue, USD Million, 2017 - 2030)
• Shipping Container
• Building-based
Vertical Farming Component Outlook (Revenue, USD Million, 2017 - 2030)
• Hardware
o Lighting
o Hydroponic components
o Climate control
o Sensors
• Software
• Services
o System Integration & Consulting
o Managed Services
o Assisted Professional Services
Vertical Farming Growing Mechanism Outlook (Revenue, USD Million, 2017 - 2030)
• Hydroponics
• Aeroponics
• Aquaponics
Vertical Farming Crop Category Outlook (Revenue, USD Million, 2017- 2030)
• Fruits Vegetables, & Herbs
o Tomato
o Lettuce
o Bell & Chili Peppers
o Strawberry
o Cucumber
o Leafy Greens (excluding lettuce)
o Herbs
o Others
• Flowers & Ornamentals
o Perennials
o Annuals
o Ornamentals
• Others (Cannabis, Microgreens)
Vertical Farming Regional Outlook (Revenue, USD Million, 2017 - 2030)
• North America
o U.S.
o Canada
o Mexico
• Europe
o Germany
o U.K.
o France
o Italy
o Spain
• Asia Pacific
o China
o Japan
o India
o Singapore
o South Korea
• South America
o Brazil
• Middle East and Africa (MEA)
Order a free sample PDF of the Vertical Farming Market Intelligence Study, published by Grand View Research.
Recent Developments
• In March 2023, BrightFarms, a pioneer in the indoor farming industry, is growing by establishing four additional regional greenhouse centers that introduce sustainably farmed leafy greens to a broader audience in the Eastern and Central United States. The newly built greenhouse centers are expected to meet the rising demand for organic food and initiate distribution to retailers by 2024. With this expansion, the company is expecting 10x revenue growth by 2024.
• In February 2023, AeroFarms and Public Investment Fund (PIF), a wealth funding body of Saudi Arabia, announced a joint venture to establish indoor vertical farms in the Middle East and Saudi Arabia.
#Vertical Farming Market#Vertical Farming Market size#Vertical Farming Market share#Vertical Farming Market analysis#Vertical Farming Industry
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Agilex 3 FPGAs: Next-Gen Edge-To-Cloud Technology At Altera
Agilex 3 FPGA
Today, Altera, an Intel company, launched a line of FPGA hardware, software, and development tools to expand the market and use cases for its programmable solutions. Altera unveiled new development kits and software support for its Agilex 5 FPGAs at its annual developer’s conference, along with fresh information on its next-generation, cost-and power-optimized Agilex 3 FPGA.
Altera
Why It Matters
Altera is the sole independent provider of FPGAs, offering complete stack solutions designed for next-generation communications infrastructure, intelligent edge applications, and high-performance accelerated computing systems. Customers can get adaptable hardware from the company that quickly adjusts to shifting market demands brought about by the era of intelligent computing thanks to its extensive FPGA range. With Agilex FPGAs loaded with AI Tensor Blocks and the Altera FPGA AI Suite, which speeds up FPGA development for AI inference using well-liked frameworks like TensorFlow, PyTorch, and OpenVINO toolkit and tested FPGA development flows, Altera is leading the industry in the use of FPGAs in AI inference workload
Intel Agilex 3
What Agilex 3 FPGAs Offer
Designed to satisfy the power, performance, and size needs of embedded and intelligent edge applications, Altera today revealed additional product details for its Agilex 3 FPGA. Agilex 3 FPGAs, with densities ranging from 25K-135K logic elements, offer faster performance, improved security, and higher degrees of integration in a smaller box than its predecessors.
An on-chip twin Cortex A55 ARM hard processor subsystem with a programmable fabric enhanced with artificial intelligence capabilities is a feature of the FPGA family. Real-time computation for time-sensitive applications such as industrial Internet of Things (IoT) and driverless cars is made possible by the FPGA for intelligent edge applications. Agilex 3 FPGAs give sensors, drivers, actuators, and machine learning algorithms a smooth integration for smart factory automation technologies including robotics and machine vision.
Agilex 3 FPGAs provide numerous major security advancements over the previous generation, such as bitstream encryption, authentication, and physical anti-tamper detection, to fulfill the needs of both defense and commercial projects. Critical applications in industrial automation and other fields benefit from these capabilities, which guarantee dependable and secure performance.
Agilex 3 FPGAs offer a 1.9×1 boost in performance over the previous generation by utilizing Altera’s HyperFlex architecture. By extending the HyperFlex design to Agilex 3 FPGAs, high clock frequencies can be achieved in an FPGA that is optimized for both cost and power. Added support for LPDDR4X Memory and integrated high-speed transceivers capable of up to 12.5 Gbps allow for increased system performance.
Agilex 3 FPGA software support is scheduled to begin in Q1 2025, with development kits and production shipments following in the middle of the year.
How FPGA Software Tools Speed Market Entry
Quartus Prime Pro
The Latest Features of Altera’s Quartus Prime Pro software, which gives developers industry-leading compilation times, enhanced designer productivity, and expedited time-to-market, are another way that FPGA software tools accelerate time-to-market. With the impending Quartus Prime Pro 24.3 release, enhanced support for embedded applications and access to additional Agilex devices are made possible.
Agilex 5 FPGA D-series, which targets an even wider range of use cases than Agilex 5 FPGA E-series, which are optimized to enable efficient computing in edge applications, can be designed by customers using this forthcoming release. In order to help lower entry barriers for its mid-range FPGA family, Altera provides software support for its Agilex 5 FPGA E-series through a free license in the Quartus Prime Software.
Support for embedded applications that use Altera’s RISC-V solution, the Nios V soft-core processor that may be instantiated in the FPGA fabric, or an integrated hard-processor subsystem is also included in this software release. Agilex 5 FPGA design examples that highlight Nios V features like lockstep, complete ECC, and branch prediction are now available to customers. The most recent versions of Linux, VxWorks, and Zephyr provide new OS and RTOS support for the Agilex 5 SoC FPGA-based hard processor subsystem.
How to Begin for Developers
In addition to the extensive range of Agilex 5 and Agilex 7 FPGAs-based solutions available to assist developers in getting started, Altera and its ecosystem partners announced the release of 11 additional Agilex 5 FPGA-based development kits and system-on-modules (SoMs).
Developers may quickly transition to full-volume production, gain firsthand knowledge of the features and advantages Agilex FPGAs can offer, and easily and affordably access Altera hardware with FPGA development kits.
Kits are available for a wide range of application cases and all geographical locations. To find out how to buy, go to Altera’s Partner Showcase website.
Read more on govindhtech.com
#Agilex3FPGA#NextGen#CloudTechnology#TensorFlow#Agilex5FPGA#OpenVINO#IntelAgilex3#artificialintelligence#InternetThings#IoT#FPGA#LPDDR4XMemory#Agilex5FPGAEseries#technology#Agilex7FPGAs#QuartusPrimePro#technews#news#govindhtech
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Internet of Things (IoT) Smart Meter Market Future Business Trends, Growing Technology Opportunities 2024-2032
The Reports and Insights, a leading market research company, has recently releases report titled “Internet of Things (IoT) Smart Meter Market: Global Industry Trends, Share, Size, Growth, Opportunity and Forecast 2024-2032.” The study provides a detailed analysis of the industry, including the global Internet of Things (IoT) Smart Meter Market share, size, trends, and growth forecasts. The report also includes competitor and regional analysis and highlights the latest advancements in the market.
Report Highlights:
How big is the Internet of Things (IoT) Smart Meter Market?
The internet of things (IOT) smart meter market is expected to grow at a CAGR of 12.5% during the forecast period of 2024 to 2032.
What are Internet of Things (IoT) Smart Meter?
An Internet of Things (IoT) smart meter is a device used for measuring and recording the consumption of utilities like electricity, gas, or water. It communicates this data wirelessly to a central system for monitoring and billing purposes. These smart meters enable two-way communication between the utility provider and the consumer, allowing for real-time monitoring of energy or water usage. They offer features such as remote reading, automated billing, and the ability to detect and report issues like leaks or outages. IoT smart meters are essential for more efficient resource management, improved service reliability, and the integration of renewable energy sources into the grid.
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What are the growth prospects and trends in the Internet of Things (IoT) Smart Meter industry?
The internet of things (IoT) smart meters market growth driven by various factors and drivers. The market for Internet of Things (IoT) smart meters is experiencing significant expansion, fueled by the growing uptake of smart grid technologies and the increasing need for effective energy management solutions. These smart meters provide advantages like real-time monitoring, remote reading, and automated billing, leading to their deployment in residential, commercial, and industrial settings. Government programs aimed at modernizing utility infrastructure and encouraging energy conservation are also driving market growth. However, challenges such as data privacy issues and the high cost of installation may impede growth to some degree. Hence, all these factors contribute to internet of things (IoT) smart meters market growth.
What is included in market segmentation?
The report has segmented the market into the following categories:
Product Type:
Electricity Smart Meters
Water Smart Meters
Gas Smart Meters
Communication Technology:
Wired Smart Meters
Wireless Smart Meters
Component:
Hardware
Software
Services
End-User:
Residential
Commercial
Industrial
Application:
Energy Consumption Monitoring
Load Management
Billing and Payment Management
Remote Disconnect/Reconnect
Demand Response
Others
Meter Type:
Advanced Metering Infrastructure (AMI)
Automatic Meter Reading (AMR)
Connectivity:
Cellular Network
Power Line Communication (PLC)
Radio Frequency (RF)
Others
Deployment:
Retrofit
New Installation
Customer Type:
Investor-Owned Utilities (IOUs)
Public Utilities
Cooperative Utilitie
Meter Phase:
Single Phase
Three Phase
Power Source:
Battery-Powered
Hardwired
Application Area:
Residential Buildings
Commercial Buildings
Industrial Building
Meter Data Management (MDM) Solutions:
Data Collection
Data Storage
Data Analysis
Data Visualization
Service Model:
Managed Services
Professional Services
Sales Channel:
Direct Sales
Indirect Sales
Report Segmentation:
North America:
United States
Canada
Europe:
Germany
United Kingdom
France
Italy
Spain
Russia
Poland
BENELUX
NORDIC
Rest of Europe
Asia Pacific:
China
Japan
India
South Korea
ASEAN
Australia & New Zealand
Rest of Asia Pacific
Latin America:
Brazil
Mexico
Argentina
Rest of Latin America
Middle East & Africa:
Saudi Arabia
South Africa
United Arab Emirates
Israel
Egypt
Rest of MEA
Who are the key players operating in the industry?
The report covers the major market players including:
Siemens AG
Landis+Gyr
Itron Inc.
Schneider Electric SE
Honeywell International Inc.
Aclara Technologies LLC
Kamstrup A/S
Iskraemeco
Badger Meter, Inc.
Sensus (Xylem Inc.)
Elster Group GmbH (Honeywell International Inc.)
ICSA (India) Limited
Jiangsu Linyang Energy Co., Ltd.
Neptune Technology Group Inc.
Holley Technology Ltd.
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#Internet of Things (IoT) Smart Meter Market share#Internet of Things (IoT) Smart Meter Market size#Internet of Things (IoT) Smart Meter Market trends
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Market Report on Vertical Farming Products: Understanding Size, Share, and Growth Trajectories
The global vertical farming market size is expected to reach USD USD 24.95 billion by 2030, according to a new report by Grand View Research, Inc. It is expected to expand at a CAGR of 20.1% from 2023 to 2030. Increased use of Internet of Things (IoT) sensors for producing crops is likely to spur market demand over the forecast period. Information obtained from the sensors is stored on the cloud and analyzed to perform the required actions. The growing automation in agriculture and increasing use of big data and predictive analytics for maximizing yields are also likely to drive the market.
Vertical farming is effective in ensuring stability in crop production and maintaining reliability even in adverse climatic conditions. It provides multiple benefits over the traditional farming technique, such as less use of water, the lesser need for agrochemicals, and low dependence on agricultural labor. Vertical farming makes use of metal reflectors and artificial lighting to maximize natural sunlight.
Genetically modified organisms and the environmental and health effects of pesticides and other non-natural substances that are used for increasing agricultural production have encouraged consumers to adopt organic foods. According to the Organic Trade Association, the U.S. organic industry sales increased by around 5% in 2019 owing to the increased investment in infrastructure and education. As per the Organic Foods Production Act of 1990, the handlers and growers of organic products need to comply with the regulations.
Artificial lighting helps in extending the hours of natural daylight, which further increases the health, growth rate, and yield of the plants. Artificial lighting such as high-pressure sodium lighting and LED lighting can extend the availability of crops (throughout a season). LED lighting systems produce a dual-band color spectrum and generate low heat. They are anticipated to witness significant growth over the forecast period.
A hydroponic system is a method of growing plants without soil. A hydroponic system eliminates the need for pesticides and artificial ripening agents and helps in producing nutritionally-rich vegetables. However, factors such as high initial investment and fewer crop varieties are likely to restrain the market growth.
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Vertical Farming Market Report Highlights
The escalating production of biopharmaceutical products is anticipated to drive the market
The shipping container segment accounted for the largest market share in 2022. Shipping container-based farming uses less water than traditional farming with drip irrigation. Shipping containers can be easily stacked, modified, recycled, and refurbished at a lower cost. Additionally, the excess availability of unused shipping containers across the region will likely influence segment growth over the forecast period
The hardware segment accounted the largest market share in 2022. The hardware plays a significant role in maintaining the environment of the indoor farms. The segment is further categorized into climate control systems, lighting systems, sensors, and irrigation systems, which enables the cultivation of indoor-grown crops
The fruits vegetables, & herbs segment is also expected to have considerable growth over the forecast period. The increasing cultivation of commonly grown fruits and vegetables in greenhouses is driving the segment growth. Crops grown in vertical farming provide maximum profit to companies involved in their cultivation
Based on offering, the climate control segment is expected to witness high growth over the forecast period as the growth of crops can be controlled by monitoring and adjusting the concentrations of minerals
By growing mechanism, the aeroponics segment is expected to observe considerable growth over the forecast period as the aeroponics facilitate fast growth in plants (under normal conditions)
The North American regional market is expected to witness significant growth over the forecast period owing to the expansion of small-scale, commercial vertical farms
Gain deeper insights on the market and receive your free copy with TOC now @: Vertical Farming Market Report
We have segmented the global vertical farming market report based on structure, growing mechanism, crop category and region.
#VerticalFarming#UrbanAgriculture#SustainableFarming#AgTech#Hydroponics#Aeroponics#SmartFarming#ControlledEnvironmentAgriculture#FoodSecurity#GreenTech#UrbanFarming#CropProduction#InnovativeAgriculture#SustainableDevelopment#ClimateSmartAgriculture#AgriTechTrends#VerticalFarmingGrowth#AgriculturalInnovation#FutureFarming#ResourceEfficientFarming
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Maximizing ROI: The Cost-Effectiveness of Amazon Web Services (AWS)
In today's digitally driven landscape, cloud computing has become synonymous with innovation and operational efficiency for businesses worldwide. Among the plethora of cloud service providers, Amazon Web Services (AWS) stands tall, offering an extensive suite of tools and solutions to empower organizations on their path to digital transformation. This in-depth exploration navigates through the core features, advantages, and transformative impact that AWS brings to businesses of all sizes.
Introducing Amazon Web Services (AWS)
Amazon Web Services, commonly referred to as AWS, is a cloud computing platform introduced by Amazon.com in 2006. Since its inception, AWS has redefined the accessibility and utilization of computing resources, storage solutions, and an array of IT services. Its distinguishing factors lie in its unmatched scalability, reliability, and diverse service offerings, making it the preferred choice across industries, from startups to enterprise-level corporations and government entities.
Scalability: Harnessing Elasticity for Dynamic Growth
AWS's hallmark feature is its elastic scalability, empowering businesses to seamlessly adjust their computing resources according to fluctuating demands. With AWS, organizations can effortlessly scale their infrastructure up or down, ensuring optimal performance and cost efficiency. Whether handling sudden spikes in website traffic or launching new applications, AWS provides the agility necessary to respond swiftly to evolving business needs.
Reliability: Building Upon a Foundation of Resilience
Reliability is a cornerstone of cloud computing, and AWS excels in this domain. By leveraging multiple data centers distributed across different geographic regions, AWS offers a highly redundant infrastructure, minimizing the risk of downtime and ensuring uninterrupted service availability. Through the strategic distribution of workloads across various availability zones, AWS provides inherent fault tolerance, enabling businesses to achieve exceptional levels of reliability for their critical applications and services.
Cost-effectiveness: Maximizing Value with Flexible Pricing Models
In a competitive market, cost optimization is paramount for businesses. AWS's pay-as-you-go pricing model enables organizations to pay solely for the resources they consume, eliminating the need for upfront investments in hardware or long-term commitments. This flexible pricing structure, coupled with robust cost management tools like AWS Cost Explorer and AWS Budgets, empowers businesses to manage their cloud expenditures effectively and optimize return on investment (ROI).
Security: Fortifying Digital Assets with Comprehensive Protections
Security is a top priority in the cloud, and AWS places great emphasis on it. Through stringent security measures such as encryption, access controls, and network security protocols, AWS provides a secure environment for sensitive data and critical workloads. Additionally, AWS offers compliance certifications tailored to various industry standards, ensuring that businesses can meet regulatory requirements seamlessly. Whether safeguarding customer data or protecting intellectual property, AWS instills confidence through its commitment to best-in-class security practices.
Diverse Service Portfolio: Enabling Innovation Across Industries
AWS boasts a diverse and extensive service portfolio, catering to a myriad of use cases and industry verticals. From foundational services like compute instances (EC2) and storage solutions (S3) to advanced offerings such as machine learning (Amazon SageMaker) and Internet of Things (IoT) platforms, AWS provides the essential tools needed to drive innovation and unlock new opportunities. Whether developing mobile applications, analyzing vast datasets, or deploying global e-commerce platforms, AWS offers the comprehensive suite of services to support diverse business objectives.
Flexibility and Customization: Tailoring Solutions to Unique Needs
A key strength of AWS lies in its flexibility and customization capabilities. With a vibrant ecosystem of third-party integrations and tools, AWS empowers businesses to tailor their cloud environments to align with specific requirements. Whether implementing hybrid cloud architectures, adopting DevOps practices, or integrating seamlessly with existing IT systems, AWS offers the flexibility necessary to adapt and innovate within the dynamic business landscape.
Conclusion: Embracing the Future with AWS
In summary, Amazon Web Services (AWS) transcends the realm of mere cloud computing—it serves as a catalyst for innovation, efficiency, and growth. With its unmatched scalability, reliability, cost-effectiveness, security measures, and diverse service portfolio, AWS empowers businesses to realize their full potential in the digital age. Whether aspiring to disrupt markets as a startup or striving for operational excellence as an enterprise, AWS provides the indispensable tools and services to transform visions into reality. Embrace the future of cloud computing with AWS and embark on a journey of endless possibilities.
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Supply Chain 2.0: The Evolution of Logistics in the Australian Business Landscape
Introduction: In the dynamic landscape of Australian business, the evolution of supply chain management has reached new heights with the advent of Supply Chain 2.0. This transformative phase is driven by advanced technologies and innovative solutions that redefine how businesses handle logistics. In this blog post, we will explore the changing face of Supply chain solutions in Australia, focusing on supply chain solutions and the role of supply chain management software in this transformative journey.
The Current State of Supply Chain Management in Australia:
Australia's geographical expanse and its position as a global trade hub make efficient supply chain management crucial for businesses. Traditional supply chain models are no longer sufficient to meet the demands of modern commerce. Companies across industries are recognizing the need to adapt and embrace Supply Chain 2.0 to stay competitive in today's fast-paced business environment.
Supply Chain Solutions in Australia:
Supply chain solutions play a pivotal role in enhancing the efficiency, visibility, and overall performance of logistics networks. Companies are increasingly turning to comprehensive supply chain solutions to optimize their operations. From procurement to distribution, these solutions streamline processes, reduce costs, and improve customer satisfaction.
One of the key drivers of Supply Chain 2.0 in Australia is the integration of cutting-edge technologies such as artificial intelligence, machine learning, and the Internet of Things (IoT). These technologies empower businesses to make data-driven decisions, predict demand, and proactively address potential disruptions.
Supply Chain Management Software in Australia:
Central to the evolution of Supply Chain 2.0 is the adoption of advanced supply chain management software. In Australia, businesses are investing in sophisticated software solutions that offer end-to-end visibility and control over the entire supply chain. This software provides real-time insights, enabling companies to make informed decisions and quickly respond to changing market conditions.
The implementation of supply chain management software in Australia is not limited to large enterprises. Small and medium-sized businesses are also recognizing the benefits of digitizing their supply chain processes. Cloud-based solutions make these technologies accessible to businesses of all sizes, leveling the playing field and fostering innovation across the industry.
Benefits of Supply Chain 2.0 in Australia:
Increased Efficiency : Supply Chain 2.0 emphasizes automation and optimization, leading to increased efficiency in operations. From inventory management to order fulfillment, businesses can streamline processes and reduce the risk of errors.
Enhanced Visibility: Real-time data and analytics provided by supply chain management software offer unparalleled visibility into the entire supply chain. This visibility enables businesses to track shipments, monitor inventory levels, and identify potential bottlenecks.
Cost Reduction: By optimizing processes and minimizing inefficiencies, Supply Chain 2.0 helps businesses reduce overall operational costs. This cost-effectiveness is a significant factor driving the adoption of advanced supply chain solutions in Australia.
Adaptability to Market Changes : The dynamic nature of the business landscape requires companies to be agile and responsive. Supply chain management software allows businesses to adapt quickly to market changes, ensuring they stay ahead of the competition.
Final Thoughts :
As Australia embraces Supply Chain 2.0, the evolution of logistics is reshaping the way businesses manage their supply chains. The VNC Global integration of advanced supply chain solutions and management software is propelling the industry toward greater efficiency, visibility, and adaptability. Companies that invest in these technologies are better positioned to navigate the complexities of the modern business landscape, making Supply Chain 2.0 a key enabler of success in the Australian market. To stay competitive, businesses of all sizes must consider adopting these innovative solutions to unlock the full potential of their supply chains.
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Digital Twin Market Size 2023-2030: ABB, AVEVA Group plc, Dassault Systemes
Digital Twin Market by Power Source (Battery-Powered, hardwired with battery backup, Hardwired without battery backup), Type (Photoelectric Smoke Detectors, Ionization Smoke Detectors), Service, Distribution Channel, and region (North America, Europe, Asia-Pacific, Middle East, and Africa and South America). The global Digital Twin Market size is 11.12 billion USD in 2022 and is projected to reach a CAGR of 60.9% from 2023-2030.
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Digital twin technology has allowed businesses in end-use industries to generate digital equivalents of objects and systems across the product lifecycle. The potential use cases of digital twin technology have expanded rapidly over the years, anchored in the increasing trend of integration with internet-of-things (IoT) sensors. Coupled with AI and analytics, the capabilities of digital twins are enabling engineers to carry out simulations before a physical product is developed. As a result, digital twins are being deployed by manufacturing companies to shorten time-to-market. Additionally, digital twin technology is also showing its potential in optimizing maintenance costs and timelines, thus has attracted colossal interest among manufacturing stalwarts, notably in discrete manufacturing.
The shift to interconnected environments across industries is driving the demand for digital twin solutions across the world. Massive adoption of IoT is being witnessed, with over 41 billion connected IoT devices expected to be in use by 2030. For the successful implementation and functioning of IoT, increasing the throughput for every part or “thing” is necessary, which is made possible by digital twin technology. Since the behavior and performance of a system over its lifetime depend on its components, the demand for digital twin technology is increasing across the world for system improvement. The emergence of digitalization in manufacturing is driving the global digital twin market. Manufacturing units across the globe are investing in digitalization strategies to increase their operational efficiency, productivity, and accuracy. These digitalization solutions including digital twin are contributing to an increase in manufacturer responsiveness and agility through changing customer demands and market conditions.
On the other hand, there has been a wide implementation of digital technologies like artificial intelligence, IoT, clog, and big data which is increasing across the business units. The market solutions help in the integration of IoT sensors and technologies that help in the virtualization of the physical twin. The connectivity is growing and so are the associated risks like security, data protection, and regulations, alongside compliance.
During the COVID-19 pandemic, the use of digital twin technologies to manage industrial and manufacturing assets increased significantly across production facilities to mitigate the risks associated with the outbreak. Amid the lockdown, the U.S. implemented a National Digital Twin Program, which was expected to leverage the digital twin blueprint of major cities of the U.S. to improve smart city infrastructure and service delivery. The COVID-19 pandemic positively impacted the digital twin market demand for twin technology.
Delvens Industry Expert’s Standpoint
The use of solutions like digital twins is predicted to be fueled by the rapid uptake of 3D printing technology, rising demand for digital twins in the healthcare and pharmaceutical sectors, and the growing tendency for IoT solution adoption across multiple industries. With pre-analysis of the actual product, while it is still in the creation stage, digital twins technology helps to improve physical product design across the full product lifetime. Technology like digital twins can be of huge help to doctors and surgeons in the near future and hence, the market is expected to grow.
Market Portfolio
Key Findings
The enterprise segment is further segmented into Large Enterprises and Small & Medium Enterprises. Small & Medium Enterprises are expected to dominate the market during the forecast period. It is further expected to grow at the highest CAGR from 2023 to 2030.
The industry segment is further segmented into Automotive & Transportation, Energy & Utilities, Infrastructure, Healthcare, Aerospace, Oil & Gas, Telecommunications, Agriculture, Retail, and Other Industries. The automotive & transportation industry is expected to account for the largest share of the digital twin market during the forecast period. The growth can be attributed to the increasing usage of digital twins for designing, simulation, MRO (maintenance, repair, and overhaul), production, and after-service.
The market is also divided into various regions such as North America, Europe, Asia-Pacific, South America, and Middle East and Africa. North America is expected to hold the largest share of the digital twin market throughout the forecast period. North America is a major hub for technological innovations and an early adopter of digital twins and related technologies.
During the COVID-19 pandemic, the use of digital twin technologies to manage industrial and manufacturing assets increased significantly across production facilities to mitigate the risks associated with the outbreak. Amid the lockdown, the U.S. implemented a National Digital Twin Program, which was expected to leverage the digital twin blueprint of major cities of the U.S. to improve smart city infrastructure and service delivery. The COVID-19 pandemic positively impacted the digital twin market demand for twin technology.
Regional Analysis
North America to Dominate the Market
North America is expected to hold the largest share of the digital twin market throughout the forecast period. North America is a major hub for technological innovations and an early adopter of digital twins and related technologies.
North America has an established ecosystem for digital twin practices and the presence of large automotive & transportation, aerospace, chemical, energy & utilities, and food & beverage companies in the US. These industries are replacing legacy systems with advanced solutions to improve performance efficiency and reduce overall operational costs, resulting in the growth of the digital twin technology market in this region.
Competitive Landscape
ABB
AVEVA Group plc
Dassault Systemes
General Electric
Hexagon AB
IBM Corporation
SAP
Microsoft
Siemens
ANSYS
PTC
IBM
Recent Developments
In April 2022, GE Research (US) and GE Renewable Energy (France), subsidiaries of GE, collaborated and developed a cutting-edge artificial intelligence (AI)/machine learning (ML) technology that has the potential to save the worldwide wind industry billions of dollars in logistical expenses over the next decade. GE’s AI/ML tool uses a digital twin of the wind turbine logistics process to accurately predict and streamline logistics costs. Based on the current industry growth forecasts, AI/ML might enable a 10% decrease in logistics costs, representing a global cost saving to the wind sector of up to USD 2.6 billion annually by 2030.
In March 2022, Microsoft announced a strategic partnership with Newcrest. The mining business of Newcrest would adopt Azure as its preferred cloud provider globally, as well as work on digital twins and a sustainability data model. Both organizations are working together on projects, including the use of digital twins to improve operational performance and developing a high-impact sustainability data model.
Reasons to Acquire
Increase your understanding of the market for identifying the best and most 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 Digital Twin Market so as to understand the trends and the factors involved in 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
Report FeatureDescriptionsGrowth RateCAGR of 60.9% during the forecasting period, 2023-2030Historical Data2019-2021Forecast Years2023-2030Base Year2022Units ConsideredRevenue in USD million and CAGR from 2023 to 2030Report Segmentationenterprise, platform, application, and region.Report AttributeMarket Revenue Sizing (Global, Regional and Country Level) Company Share Analysis, Market Dynamics, Company ProfilingRegional Level ScopeNorth America, Europe, Asia-Pacific, South America, and Middle East, and AfricaCountry Level ScopeU.S., Japan, Germany, U.K., China, India, Brazil, UAE, and South Africa (50+ Countries Across the Globe)Companies ProfiledABB; AVEVA Group plc; Dassault Systems; General Electric; Hexagon AB; IBM Corp.; SAP.Available CustomizationIn addition to the market data for Digital Twin Market, Delvens offers client-centric reports and customized according to the company’s specific demand and requirement.
TABLE OF CONTENTS
Large Enterprises
Small & Medium Enterprises
Product Design & Development
Predictive Maintenance
Business Optimization
Performance Monitoring
Inventory Management
Other Applications
Automotive & Transportation
Energy & Utilities
Infrastructure
Healthcare
Aerospace
Oil & Gas
Telecommunications
Agriculture
Retail
Other Industries.
Asia Pacific
North America
Europe
South America
Middle East & Africa
ABB
AVEVA Group plc
Dassault Systemes
General Electric
Hexagon AB
IBM Corporation
SAP
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#Digital Twin Market#Digital Twin#Digital Twin Market Size#Digital Twin Market Share#Semiconductors & Electronics
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Bright Future: The Growing Market for Connected Streetlights
As cities across the world continue to grow, they are faced with new challenges in terms of managing infrastructure and ensuring the safety and security of their citizens. One area that has seen significant innovation in recent years is the realm of street lighting, which has undergone a transformation with the introduction of connected streetlights.
Connected streetlights are a type of smart streetlight system that utilizes internet of things (IoT) technology to create a network of intelligent and interconnected lighting fixtures. These streetlights are equipped with sensors, cameras, and other advanced technologies that allow them to monitor and respond to changes in their environment in real time.
Connected streetlights Market size was valued at $1.3 billion in 2020 and it is estimated to grow at a CAGR of 14.82% during 2021-2026. The growth is mainly attributed to the high penetration of internet of things (IoT), constant innovation in mobile networks along with wireless technology, increasing demand for efficient advanced lighting solutions across industries and awareness regarding energy conservation.
One of the key benefits of connected streetlights is their ability to improve public safety. With sensors that can detect motion, sound, and other indicators of potentially dangerous situations, these streetlights can automatically adjust their lighting levels and even alert authorities if necessary. For example, if a group of people are loitering in a poorly lit area, the streetlights can increase their brightness to discourage criminal activity and notify law enforcement of the situation.
Key Takeaways
Hardware held the highest market share in 2020 and is anticipated to witness significant amount of growth, owing to increasing awareness regarding environmental issues and growing adoption of LED streetlights.
Public & Government sector is analysed to witness the fastest growth between 2021-2026. Rising requirement for cost effective, energy efficient lighting technology and smart city project initiatives are the key factors behind the growth.
North America held the major market share in 2020 and is anticipated to witness significant growth during forecast period, owing to the early adoption of this technology, rising investments in smart city projects and the presence of prominent market players.
Increasing smart city investment and penetration of wireless technology works as a growth driver for this market during 2021-2026.
Connected streetlights Market Landscape
Technology launches, Acquisitions,Collaboration, and R&D activities are key strategies adopted by players in the connected streetlights Industry Outlook. Connected streetlights top 10 companies includes General Electric, Koninklijke Philips N.V, Telensa Holdings Ltd., Echelon Corporation, Osram Licht AG, Signify Holding B.V., Cisco Systems, Inc.,Trilliant holdings Inc., AxiomTek Co., Ltd., Cree Inc. and others.
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BIPV (Building Integrated Photovoltaics) Glass Market
BIPV Glass Market Size, Share, Trends: AGC Inc. Leads
Integration of IoT and Smart Technologies in BIPV Systems
Market Overview:
The global market for BIPV glass is anticipated to grow at a compound annual growth rate (CAGR) of 20.1% between 2024 and 2031. In 2022, the market size was estimated to be USD 1.63 billion; by 2031, it is expected to grow to USD 8.23 billion. Europe is anticipated to dominate the market over the anticipated period. The market for BIPV glass is expanding quickly due to rising demand for energy-efficient building materials and increased adoption of sustainable construction practices. Governments everywhere are enacting favourable legislation and offering incentives to promote the use of solar energy in buildings, which is propelling the expansion of the sector. Building owners and architects are finding BIPV glass products more appealing as a result of technological advancements in photovoltaic materials and production procedures, which are also improving the products' efficiency and aesthetics.
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Market Trends:
Smart technologies and Internet of Things (IoT) capabilities are being included into BIPV glass products to improve functionality and user control. This trend is the creation of smart BIPV systems that can be easily connected with building management systems, therefore enabling real-time monitoring of energy use, production, and general performance. IoT-enabled BIPV glass may change its transparency depending on occupant preferences and sunshine intensity, therefore maximizing interior comfort as well as energy production. Furthermore, these intelligent systems may provide building managers and owners useful data analytics, therefore facilitating improved decision-making on maintenance and energy use.
Market Segmentation:
Thanks to its great efficiency and proven production techniques, crystalline silicon technology enjoys the biggest market share in the BIPV glass sector. Many BIPV applications use this segment as it provides better power production and dependability than other PV technologies. Crystalline silicon BIPV glass solutions satisfy a variety of architectural needs by balancing performance and appearance.
Market Key Players:
The BIPV glass industry is highly competitive, with major players concentrating on strategic alliances, product innovation, and geographical growth to improve their market position. Key companies such as AGC Inc., Saint-Gobain, Nippon Sheet Glass Co., Ltd., Vitro Architectural Glass, Onyx Solar Group LLC, EMMVEE Photovoltaic Power Private Limited, Heliotrope Technologies, Brite Solar, and Solar Frontier K.K. dominate the market.
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