Artificial Intelligence
Global Electronic and Precision Equipment Repair and Maintenance Market Report (2021 to 2030) – COVID-19 Impact and Recovery
Dublin, March 03, 2021 (GLOBE NEWSWIRE) — The “Electronic and Precision Equipment Repair and Maintenance Global Market Report 2021: COVID-19 Impact and Recovery to 2030” report has been added to ResearchAndMarkets.com’s offering.
This report provides strategists, marketers and senior management with the critical information they need to assess the global electronic and precision equipment repair and maintenance market as it emerges from the COVID-19 shut down.
The global electronic and precision equipment repair and maintenance market is expected to grow from $132.17 billion in 2020 to $142.98 billion in 2021 at a compound annual growth rate (CAGR) of 8.2%. The growth is mainly due to the companies rearranging their operations and recovering from the COVID-19 impact, which had earlier led to restrictive containment measures involving social distancing, remote working, and the closure of commercial activities that resulted in operational challenges. The market is expected to reach $188.88 billion in 2025 at a CAGR of 7%.
Reasons to Purchase
Where is the largest and fastest growing market for the electronic and precision equipment repair and maintenance? How does the market relate to the overall economy, demography and other similar markets? What forces will shape the market going forward? The Electronic and Precision Equipment Repair and Maintenance market global report answers all these questions and many more.
The report covers market characteristics, size and growth, segmentation, regional and country breakdowns, competitive landscape, market shares, trends and strategies for this market. It traces the market’s historic and forecast market growth by geography. It places the market within the context of the wider electronic and precision equipment repair and maintenance market, and compares it with other markets. Major companies in the electronic and precision equipment repair and maintenance market include Apple Inc; Qualcomm Inc; Wireless Communications and Verizon Wireless.
The electronic and precision equipment repair and maintenance market consists of sales of electronic and precision equipment repair and maintenance services by entities (organizations, sole traders and partnerships) that provide electronic and precision equipment repair and maintenance services for electronic and precision equipment including electronic products and navigational, measuring, electro medical and control instruments. The electronic and precision equipment repair and maintenance market is segmented into consumer electronics repair and maintenance; computer and office machine repair and maintenance; communication equipment repair and maintenance; and other electronic and precision equipment repair and maintenance.
Western Europe was the largest region in the global electronic and precision equipment repair and maintenance market, accounting for 35% of the market in 2020. Asia Pacific was the second largest region accounting for 30% of the global electronic and precision equipment repair and maintenance market. Africa was the smallest region in the global electronic and precision equipment repair and maintenance market.
Companies involved in the repair and maintenance of electronic equipment are using artificial intelligence (AI)-predictive analysis for increasing the quality of their services. This analysis with the use of IoT technology sensors enable the service providers to identify the critical part which has the possibility to fail and understand the current status of the components. Companies like Neuron Soundware and KONUX use AI-predictive maintenance to identify anomalies and improve the detection and identification of potential breakdown causes.
Key Topics Covered:
1. Executive Summary 2. Report Structure
3. Electronic and Precision Equipment Repair and Maintenance Market Characteristics 4. Electronic and Precision Equipment Repair and Maintenance Market Product Analysis 5. Electronic and Precision Equipment Repair and Maintenance Market Supply Chain 6. Electronic and Precision Equipment Repair and Maintenance Market Customer Information 7. Electronic and Precision Equipment Repair and Maintenance Market Trends and Strategies
8. Impact of COVID-19 on Electronic and Precision Equipment Repair and Maintenance
9. Electronic and Precision Equipment Repair and Maintenance Market Size and Growth 10. Electronic and Precision Equipment Repair and Maintenance Market Regional Analysis 11. Electronic and Precision Equipment Repair and Maintenance Market Segmentation 12. Electronic and Precision Equipment Repair and Maintenance Market Metrics 13. Asia-Pacific Electronic and Precision Equipment Repair and Maintenance Market
14. Western Europe Electronic and Precision Equipment Repair and Maintenance Market
15. Eastern Europe Electronic and Precision Equipment Repair and Maintenance Market
16. North America Electronic and Precision Equipment Repair and Maintenance Market 17. South America Electronic and Precision Equipment Repair and Maintenance Market
18. Middle East Electronic and Precision Equipment Repair and Maintenance Market
19. Africa Electronic and Precision Equipment Repair and Maintenance Market
20. Electronic and Precision Equipment Repair and Maintenance Market Competitive Landscape 21. Key Mergers and Acquisitions in the Electronic and Precision Equipment Repair and Maintenance Market 22. Market Background: Repair and Maintenance Market 23. Recommendations 24. Appendix 25. Copyright and Disclaimer
For more information about this report visit https://www.researchandmarkets.com/r/efrmts
3.1. Market Definition
3.2. Key Segmentations
4.1. Leading Products/ Services
4.2. Key Features and Differentiators
4.3. Development Products
5.1. Supply Chain
5.2. Distribution
5.3. End Customers
6.1. Customer Preferences
6.2. End Use Market Size and Growth
9.1. Market Size
9.2. Historic Market Growth, Value ($ Billion)
9.2.1. Drivers of the Market
9.2.2. Restraints on the Market
9.3. Forecast Market Growth, Value ($ Billion)
9.3.1. Drivers of the Market
9.3.2. Restraints on the Market
10.1. Global Electronic and Precision Equipment Repair and Maintenance Market, 2020, by Region, Value ($ Billion)
10.2. Global Electronic and Precision Equipment Repair and Maintenance Market, 2015-2020, 2020-2025F, 2030F, Historic and Forecast, by Region
10.3. Global Electronic and Precision Equipment Repair and Maintenance Market, Growth and Market Share Comparison, by Region
11.1. Global Electronic and Precision Equipment Repair and Maintenance Market, Segmentation by Type
11.2. Global Electronic and Precision Equipment Repair and Maintenance Market, Segmentation by Mode
12.1. Electronic and Precision Equipment Repair and Maintenance Market Size, Percentage of GDP, 2015-2025, Global
12.2. Per Capita Average Electronic and Precision Equipment Repair and Maintenance Market Expenditure, 2015-2025, Global
20.1. Competitive Market Overview
20.2. Market Shares
20.3. Company Profiles
20.3.1. Apple Inc
20.3.1.1. Company Overview
20.3.1.2. Products and Services
20.3.1.3. Strategy
20.3.1.4. Financial Performance
20.3.2. Qualcomm Inc
20.3.2.1. Company Overview
20.3.2.2. Products and Services
20.3.2.3. Strategy
20.3.2.4. Financial Performance
20.3.3. Wireless Communications
20.3.3.1. Company Overview
20.3.3.2. Products and Services
20.3.3.3. Strategy
20.3.3.4. Financial Performance
20.3.4. Verizon Wireless
20.3.4.1. Company Overview
20.3.4.2. Products and Services
20.3.4.3. Strategy
20.3.4.4. Financial Performance
20.3.5.
20.3.5.1. Company Overview
20.3.5.2. Products and Services
20.3.5.3. Strategy
20.3.5.4. Financial Performance
22.1. Repair and Maintenance Market Characteristics
22.2. Repair and Maintenance Market Historic and Forecast, 2015-2020, 2020-2025F, 2030F Growth, by Segment, Value ($ Billion), Global
22.3. Global Repair and Maintenance Market, 2020, by Region, Value ($ Billion)
22.4. Global Repair and Maintenance Market, 2015-2020, 2020-2025F, 2030F, Historic and Forecast, by Region
22.5. Global Repair and Maintenance Market, 2015-2020, 2020-2025F, 2030F, Segmentation by Type, Value ($ Billion)
23.1. Global Electronic and Precision Equipment Repair and Maintenance Market in 2025 – Growth Countries
23.2. Global Electronic and Precision Equipment Repair and Maintenance Market in 2025 – Growth Segments
23.3. Global Electronic and Precision Equipment Repair and Maintenance Market in 2025 – Growth Strategies
24.1. NAICS Definitions of Industry Covered in this Report
24.2. Abbreviations
24.3. Currencies
24.4. Research Inquiries
24.5. About the Publisher
CONTACT: ResearchAndMarkets.com
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Artificial Intelligence
Huawei Wen Tong: 6G Needs to Embrace AI for Shaping Future Network
SHENZHEN, China, Sept. 29, 2024 /PRNewswire/ — At the 6G Conference held in Istanbul, on September 24, 2024, Dr. Wen Tong, Huawei Wireless CTO, delivered a keynote speech on 6G standardization and innovation. With the release of the ITU-R 6G vision framework, the 3GPP will start 6G standardization in 2025. “6G is a new generation of mobile technology, not a simple upgrade of 5G, it should bring new value to users,” said Dr. Tong, “6G is a true intergenerational technological disruption. 6G standard, key technologies, and network architecture should be re-defined based on application scenarios and requirements from 2030 to 2040. 6G should not be another way to implement 5G. Instead, 6G should embrace the AI revolution with a quantum leap and generate new values for the consumers. In this way, 3GPP standards can truly realize the 6G vision and create greater value for the entire industry.”
Centered “6G Standardization Direction” and “6G Innovation Driving Force”, Dr. Tong shared important views on the future architecture, terminal development, and key technologies of 6G.
In terms of architecture design, 6G should go beyond Service-Based Architecture and move towards Application-Driven Network.
5G has already achieved market success and continues to evolve towards 5G-Advanced. 6G will not simply reuse 5G network architecture, without generational and fundamental innovations, which will limit the mobile industry’s aspiration and imagination to dive the innovation in the 6G era. 6G must have obvious cross-generational characteristics and technical breakpoint.
On the core side, reusing the 5G core network will hinder the innovation in AI. We should use Agentic-AI based technology to re-architect 6G Core that goes beyond 5G Service-Based Architecture and support the foundational capabilities of AI, Sensing and NTN , and thus evolve towards the Application Driven Network .
In terms of terminal evolution, 6G user device calls for a breakthrough to lead the success of the entire industry chain.
It is the law of the mobile industry to drive the evolution of the market with the pioneering technology. The 6G networks and 6G terminals must meet the requirements of consumers and vertical industries in the 6G market phase from 2030 to 2040.
Currently, smartphones are evolving to AI terminals to usher in the mobile AI era. In post-MBB era, breakthroughs in terminal technologies will be the key to the evolution of the mobile industry. Therefore, 6G user device calls for a breakthrough towards “Full-AI”, thus to drive 6G network upgrade and the success of the entire industry ecosystem.
In terms of technology development, AI will become a key enabler for 6G with network paradigm shifting.
Twenty years ago, the Internet was the enabler of the technology innovations. Mobile communications embraced the Internet and achieved great business success. Today, AI maybe the disruptive enabler of the latest technology innovations.
6G should embrace the AI revolution with a quantum leap. However, 6G networks should not be limited to generative AI, Artificial General Intelligence (AGI) and Embodiment-AI are the main directions of future AI development. Therefore, AGI should run through the whole process of sensing, reasoning, decision, and action of terminals, wireless networks, and core networks of 6G, to welcome the arrival of a new network paradigm.
At the end, Dr. Tong Wen emphasized the relationship between 5G and 6G: “The global 5G deployment is on the rise and evolving to 5G-Advanced, which not only meets the current requirements of operators, but also protects their investment. Therefore, 6G technologies should not overlap with 5G in technologies and market space. The specifications, technologies, and architecture of 6G must be based on the scenarios and requirements from 2030 to 2040. We should focus on true generational technology disruption, embrace the new opportunities brought by AI, expand the mobile industry in the next generation.”
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Artificial Intelligence
How AIoT shapes the future of mobility: Hikvision at ITS World Congress 2024
HANGZHOU, China, Sept. 27, 2024 /PRNewswire/ — Hikvision made a significant impact at the ITS World Congress in Dubai with its captivating theme, “Embrace AIoT for safer, smarter, and greener mobility.” Its booth became a hub of innovation, where visitors explored AIoT solutions that are reshaping the transportation landscape, sparking deep conversations on the future of urban mobility.
Road safety revolution: harnessing AIoT for secure transportation
Hikvision’s commitment to road safety was on full display at its booth through the impressive array of AIoT solutions designed to create secure and reliable traffic environments. The company’s technology provides 24/7 traffic monitoring, ensuring continuous oversight of motor vehicles, non-motorized vehicles, pedestrians and environmental factors. This comprehensive, real-time information collection enables traffic managers to prevent accidents and enhance road safety. Among the showcased products was the 20 MP IR ANPR Checkpoint Capture Unit, renowned for its high-definition capture capabilities, bolstering traffic safety measures.
A standout innovation was the integration of advanced radar and camera technologies, ensuring uninterrupted, comprehensive detection even in adverse weather conditions. The Radar-Video Fusion Incident Detection Cameras, featured prominently in the product experience area, enable early detection and warning of potential hazards. They are particularly effective in challenging situations such as curved roads, blind spots at intersections, and obstacles beyond visual range.
Attendees also engaged with onboard monitoring products on the simulated bus, including dome network cameras, which is designed to enhance passenger safety. Driving assistance products, such as the Driver Status Monitor (DSM), were demonstrated to mitigate unsafe driving behaviors and ensure safer journeys.
Urban mobility redefined: smart traffic innovations
In the realm of smarter mobility, Hikvision showcased its multidimensional sensing technology, which integrates visible light sensors, infrared sensors, radar, and sonar. This technology expands perception capabilities, significantly improving traffic management and situational awareness. The use of AI-powered comprehensive sensing elevates incident monitoring and violation detection to unprecedented levels of accuracy and efficiency.
A major attraction was the Radar-Video Fusion TandemVu PTZ Camera, which integrates millimeter-wave radar with high-resolution cameras for extensive traffic detection and data analysis. AI-based algorithms combine these two systems to enhance target information, detecting up to 16 types of incidents. This leads to the development of a large-scale fusion model that merges spatial physical data with image semantic information. The result is ultra-long-range perception, achieving over 95% accuracy in vehicle trajectory detection. This robust system improves traffic violation management and optimizes traffic flow, significantly enhancing road efficiency.
At the simulated bus station, visitors observed how AI-assisted people counting automated the collection of passenger flow statistics at peak stop hours and bus line frequency during busy periods. Paired with smart bus stop digital signage, the solution improves bus service quality, operational efficiency, passenger experience, and overall public transport effectiveness.
Sustainable transportation: leading the charge for greener cities
Hikvision’s commitment to sustainable urban mobility was evident through its innovative green wave technology and eco-friendly checkpoint solutions. Green wave technology efficiently manages traffic flow to reduce congestion and lower carbon emissions, aligning with global sustainability goals. Visitors were particularly impressed by a case study showcasing a green wave solution implemented in Zhoushan, China. Over a stretch of 21 kilometers and 34 intersections, this main road cut travel times by 50%.
The use of DarkFighterX technology in checkpoint cameras also received significant attention. This technology senses both visible and invisible light, resulting in more accurate and realistic images. It enhances traffic violation enforcement efficiency while minimizing the need for high ambient light levels, thus reducing light pollution. The 9M DarkfightX ANPR Checkpoint Camera exemplified this dedication to environmental stewardship.
Frank Zhang, President of Hikvision MEA, remarked, “Hikvision supports sustainable urban planning by empowering traffic departments to address congestion and transportation challenges.” He further emphasized, “Our system’s openness fosters a secure and reliable platform for developing smart and green cities. Additionally, our solar technology is extensively utilized in remote areas, while our smart street lighting solutions reduce energy consumption by 20-30%, promoting intelligent urban transportation and advancing global sustainability objectives.”
Hikvision’s presence at the ITS World Congress in Dubai underscored its leadership in integrating AIoT technologies to drive safer, smarter, and greener mobility solutions. The engaging presentations and advanced product demonstrations captured significant attention from industry partners and customers, reaffirming the company’s role as a pioneer in shaping the future of urban transportation. As the world moves towards more intelligent and sustainable transportation systems, Hikvision remains at the forefront, embracing AIoT to create a safer, smarter, and greener future for all.
To find out more about Hikvision’s advanced traffic and public transport solutions, please explore the Hikvision official website.
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Artificial Intelligence
Anti-Drone Market worth $7.05 billion by 2029 – Exclusive Report by MarketsandMarkets™
DELRAY BEACH, Fla., Sept. 27, 2024 /PRNewswire/ — The global anti-drone market was valued at USD 2.16 billion in 2024 and is projected to reach USD 7.05 billion by 2029; it is expected to register a CAGR of 26.7% during the forecast period according to a new report by MarketsandMarkets™. Increasing government spending on counter-drone technologies, rising incidence of critical infrastructure security breaches by unauthorized drones, and surge in adoption of aerial remote sensing technologies to safeguard critical infrastructure are attributed to the demand for anti-drone.
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Browse in-depth TOC on “Anti-Drone Market” 178 – Tables61 – Figures253 – Pages
Anti-Drone Market Report Scope:
Report Coverage
Details
Market Revenue in 2024
$ 2.16 billion
Estimated Value by 2029
$ 7.05 billion
Growth Rate
Poised to grow at a CAGR of 26.7%
Market Size Available for
2020–2029
Forecast Period
2024–2029
Forecast Units
Value (USD Million/Billion)
Report Coverage
Revenue Forecast, Competitive Landscape, Growth Factors, and Trends
Segments Covered
By System Type, Application, Platform type, Vertical, and Region
Geographies Covered
North America, Europe, Asia Pacific, and Rest of World
Key Market Challenge
Vulnerability to hacking
Key Market Opportunities
Emphasis on improving unmanned aircraft systems technology
Key Market Drivers
Growing number of illicit activities
By System Type: Hybrid systems to account for the larger market share in the forecasted year.
The hybrid segment accounted for the largest share of the anti-drone market in 2029. The trends of integrating multiple anti-drone technologies are rising since they are most effective in detecting, tracking, and neutralizing drone threats. These systems merge electronic, kinetic, and lasers, providing a comprehensive defense solution against UAVs. Hybrid systems use electronic, kinetic, and laser-based countermeasures to offer optimum protection against drones. These systems are designed to detect, track, identify, categorize, and mitigate drones at operational wide ranges ranging from a few km up to tens of km.
By Platform: The ground-based segment accounted for the largest market share in the forecast year.
The ground-based segment will hold a major share of the anti-drone market in 2029. Many ground-based anti-drone systems use several electronic technologies, such as radar, IR sensors, acoustic systems, and RF & GNSS jammers. MESA radar solutions are used mostly for counter-UAS purposes, protecting critical infrastructure, military camps, and other security-sensitive sites from unauthorized drones. One such solution is EchoGuard, a ground-based airspace management solution that contains a software-defined 3D radar that can be specific to the site. This system can identify single or multiple off-chance drones, including swarms in unauthorized areas. They provide accurate and sustained airspace surveillance for the field of view (FOV) they are configured, and both human and AI-monitored visual checks. The system can be easily transported and integrated directly with the command-and-control centers or another identification sensor for portable use, and multiple units of the system can be combined to cover vast areas or lengths of borders. Major providers of ground-based counter-drone systems include companies like EchoDyne Corporation, DeTect, Meteksan Defense, and WhiteFox Defense. Acoustics-based Discovair G2 utilizes patented microphone arrays. With 128 interconnected microphone elements, the Discovair sensor units can establish azimuth and elevation to the target in real-time using advanced digital signal processing.
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By Region: Americas are expected to hold the largest share of the anti-drone market during the forecast period.
Americas is expected to capture the largest share in the anti-drone industry during the forecast period. The growth can be attributed to protecting crucial infrastructure in the region. Governments, particularly in the US, invest in anti-drone systems for military bases, borders, and critical infrastructure. For Instance, in April 2023, RTX secured a USD 237 million contract from the US Army to provide Ku-band Radio Frequency Sensors (KuRFS) and Coyote effectors. These systems are designed to detect and neutralize unmanned aircraft systems (UAS). The contract includes stationary and mobile systems and a specified quantity of effectors, all aimed at enhancing the Army’s operations within the US Central Command region.
Key Players-
The key companies offering anti-drone companies include RTX (US), Lockheed Martin Corporation (US), Leonardo S.p.A. (Italy), Thales (France), and IAI (Israel).
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