市場調查報告書
商品編碼
1467627
2024-2032 年按類型、技術、實施、接收器應用、最終用途產業和地區分類的無線電力傳輸市場報告Wireless Power Transmission Market Report by Type, Technology, Implementation, Receiver Application, End-Use Industry, and Region 2024-2032 |
IMARC Group年全球無線電力傳輸市場規模達183億美元。偏遠地區對電力的需求不斷成長,對可靠、高效的輸電系統的需求不斷增加,以及新輸電基礎設施的發展是推動市場的一些主要因素。
無線輸電 (WPT) 是一種無需使用實體連接器或電線即可將電能從電源傳輸到電力負載的技術。它可以透過電感耦合、諧振電感耦合、電容耦合、微波、雷射傳輸等多種方法來實現。該技術可以為智慧型手機、筆記型電腦和電動車等設備充電,無需電線和插頭的麻煩。隨著不斷進步和更先進技術的出現,無線電力傳輸的採用顯著增加,因為它有可能徹底改變我們與電子設備的日常互動並重塑我們的能源基礎設施。
電力傳輸領域的顯著成長主要推動全球市場。全球人口成長、城市化和工業化(特別是發展中國家)不斷成長的電力需求可以支持這一點。隨著經濟的發展和成長,對可靠、高效的電力傳輸系統的需求大幅增加。同時,由於永續發展趨勢的出現,新的輸電基礎設施的發展正在支持市場。同時,現代化和升級方面的大量投資正在積極影響需求。除此之外,促進能源效率和支持基礎設施發展的監管政策和政府措施的實施也為市場做出了貢獻。此外,主要參與者所進行的廣泛研發(R&D)活動正在創造積極的市場前景。
無線設備的採用不斷增加
智慧型手機、穿戴式裝置、電動牙刷和智慧手錶等無線設備的激增是主要的市場驅動力。隨著越來越多的設備採用無線充電功能,對無線電力傳輸基礎設施和相容充電解決方案的需求不斷成長。無需單獨充電器即可同時為多個裝置充電的能力進一步推動了需求。由於無線電力傳輸消除了對實體電纜和連接器的需求,因此為充電或供電設備提供了便利和易用性。使用者只需將裝置放在充電板上或一定範圍內即可開始充電,從而消除了處理纏結的電線和有限的電源插座的麻煩。這一因素是無線電力傳輸的重要促進因素,特別是在消費性電子和智慧家庭應用。
偏遠地區的快速電氣化
在電力基礎設施有限的地區或偏遠地區,無線電力傳輸提供了另一種供電解決方案。透過實現更長距離的電力傳輸,而不需要大量的佈線或基礎設施開發,無線電力傳輸有助於解決與擴大配電網路相關的挑戰,特別是在發展中地區。無線充電提供了無縫整合和供電解決方案,無需頻繁更換電池,並簡化了智慧家庭、智慧城市和工業物聯網應用中的部署。這使得無線充電成為安全性和可靠性至關重要的惡劣環境、工業環境和醫療應用的首選。
技術進步和品牌差異化
公司正在認知到無線電力傳輸在增強整體用戶體驗和區分其產品或服務方面的價值。整合無線充電功能有助於吸引顧客、提高顧客滿意度並建立品牌忠誠度。隨著無線電力傳輸變得越來越普遍,該公司正在大力投資改進無線充電選項。此外,無線電力傳輸技術的不斷進步,例如諧振電感耦合和射頻(RF)技術,提高了效率、擴大了傳輸範圍並降低了成本。除此之外,各組織的標準化工作正在為不同的無線充電技術建立標準,以實現設備和充電站之間的無縫相容性,從而滿足需求。
The global wireless power transmission market size reached US$ 18.3 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 149.6 Billion by 2032, exhibiting a growth rate (CAGR) of 25.5% during 2024-2032. The escalating demand for electricity across remote locations, the increasing need for reliable and efficient power transmission systems, and the development of new power transmission infrastructures are some of the major factors propelling the market.
Wireless Power Transmission (WPT) is a technology that enables the transfer of electrical energy from a power source to an electrical load without the use of physical connectors or wires. It is achieved through various methods, such as inductive coupling, resonant inductive coupling, capacitive coupling, microwave, and laser transmission. The technology allows to charge devices, such as smartphones, laptops, and electric vehicles without the hassle of wires and plugs. With continuous advancements and more the advent of refined techniques, there has been a significant rise in the adoption of wireless power transmission as it holds the potential to revolutionize our daily interactions with electronic devices and reshape our energy infrastructure.
Significant growth in the field of power transmission majorly drives the global market. This can be supported by the ever-growing global demand for electricity, fueled by increasing population, urbanization, and industrialization, particularly in developing nations. As economies evolve and grow, there has been a considerable increase in the need for reliable, efficient, and power transmission systems. Along with this, the development of new power transmission infrastructures due to the emerging trend of sustainability is supporting the market. In confluence with this, significant investments in modernization and upgrades are positively influencing the demand. Apart from this, the implementation of regulatory policies and government initiatives for promoting energy efficiency and supporting infrastructure development are contributing to the market. Furthermore, extensive research and development (R&D) activities conducted by key players are creating a positive market outlook.
Increasing Adoption of Wireless Devices
The proliferation of wireless devices, such as smartphones, wearables, electric toothbrushes, and smartwatches, is acting as a major market driver. As more devices incorporate wireless charging capabilities, the demand for wireless power transmission infrastructure and compatible charging solutions grows. The ability to charge multiple devices simultaneously without the need for individual chargers is further fueling the demand. Since wireless power transmission eliminates the need for physical cables and connectors, providing convenience and ease of use for charging or powering devices. Users simply place their devices on a charging pad or within a certain range to initiate charging, eliminating the hassle of dealing with tangled cords and limited power outlets. This factor is a significant driver for wireless power transmission, especially in consumer electronics and smart home applications.
Rapid Electrification of Remote Locations
In areas with limited power infrastructure or in remote locations, wireless power transmission offers an alternative solution for providing electricity. By enabling power transmission over longer distances without the need for extensive cabling or infrastructure development, wireless power transmission helps address the challenges associated with expanding power distribution networks, especially in developing regions. Wireless charging provides a seamless integration and power supply solution, eliminating the need for frequent battery replacements and simplifying deployment in smart homes, smart cities, and industrial IoT applications. This makes wireless charging a preferred option in rugged environments, industrial settings, and medical applications where safety and reliability are critical.
Technological Advancements and Brand Differentiation
Companies are recognizing the value of wireless power transmission in enhancing the overall user experience and differentiating their products or services. Incorporating wireless charging capabilities help attract customers, improve customer satisfaction, and build brand loyalty. As wireless power transmission becomes more prevalent, companies are heavily investing in improving wireless charging options. In addition, continuous technological advancements in wireless power transmission, such as resonant inductive coupling and radio frequency (RF) technologies, have increased efficiency, extended transmission ranges, and reduced costs. Besides this, standardization efforts by organizations is establishing standards for different wireless charging technologies, enabling seamless compatibility between devices and charging stations, thus contributing to the demand.
IMARC Group provides an analysis of the key trends in each segment of the global wireless power transmission market report, along with forecasts at the global, regional and country levels from 2024-2032. Our report has categorized the market based on type, technology, implementation, receiver application, and end-use industry.
Devices With Battery
Devices Without Battery
Devices with battery dominate the market
The report has provided a detailed breakup and analysis of the wireless power transmission market based on the type. This includes devices with battery and devices without battery. According to the report, devices with battery represented the largest segment.
Near-Field Technology
Inductive
Magnetic Resonance
Capacitive Coupling/Conductive
Far-Field Technology
Microwave/RF
Laser/Infrared
Near-Field Technology dominates the market
A detailed breakup and analysis of the wireless power transmission market based on the technology has also been provided in the report. This includes near-field technology (inductive, magnetic resonance, and capacitive coupling/conductive) and far-field technology (microwave/rf and laser/infrared). According to the report, near-field technology accounted for the largest market share.
Aftermarket
Integrated
Aftermarket dominates the market
The report has provided a detailed breakup and analysis of the wireless power transmission market based on the implementation. This includes aftermarket and integrated. According to the report, the aftermarket represented the largest segment.
Smartphones
Tablets
Wearable Electronics
Notebooks
Electric Vehicles
Robots
Others
Smartphones dominate the market
A detailed breakup and analysis of the wireless power transmission market based on the receiver application has also been provided in the report. This includes smartphones, tablets, wearable electronics, notebooks, electric vehicles, robots, and others. According to the report, smartphones accounted for the largest market share.
Consumer Electronics
Automotive
Healthcare
Defense
Power Generation
Others
Consumer electronics dominates the wireless power transmission market
The report has provided a detailed breakup and analysis of the wireless power transmission market based on the end-use industry. This includes consumer electronics, automotive, healthcare, defense, power generation, and others. According to the report, consumer electronics represented the largest segment.
North America
United States
Canada
Asia Pacific
China
Japan
India
South Korea
Australia
Indonesia
Others
Europe
Germany
France
United Kingdom
Italy
Spain
Russia
Others
Latin America
Brazil
Mexico
Others
Middle East and Africa
Asia Pacific exhibits a clear dominance, accounting for the largest market share
The report has also provided a comprehensive analysis of all the major regional markets, which include North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and others); Latin America (Brazil, Mexico, and others); and the Middle East and Africa.
Energous Corporation
Humavox Ltd.
Integrated Device Technology Inc. (Renesas Electronics Corporation)
Leggett & Platt
Murata Manufacturing Co. Ltd.
NuCurrent Inc.
MothersonOssia
Qualcomm Incorporated
Samsung Electronics
TDK Corporation
Texas Instruments
Wi-Charge Ltd.
WiTricity Corporation