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市场调查报告书
商品编码
1660697
2025 年至 2033 年无线电力传输市场报告(按类型、技术、实施、接收器应用、最终用途产业和地区划分)Wireless Power Transmission Market Report by Type, Technology, Implementation, Receiver Application, End-Use Industry, and Region 2025-2033 |
2024IMARC Group全球无线电力传输市场规模达到 230 亿美元。由于对节能解决方案的需求不断增加、电动车(EV)中无线电力传输的采用日益增多、消费性电子产业的成长、技术的快速进步以及对无线充电基础设施的大量投资,市场正在迅速扩张。
无线电力传输 (WPT) 是一种无需使用实体连接器或电线即可将电能从电源传输到电气负载的技术。它是透过多种方法实现的,例如电感耦合、谐振电感耦合、电容耦合、微波和雷射传输。该技术可以对智慧型手机、笔记型电脑和电动车等设备进行充电,无需电线和插头的麻烦。随着技术的不断进步和不断改进,无线电力传输的采用率显着上升,因为它有可能彻底改变我们与电子设备的日常互动并重塑我们的能源基础设施。
电力传输领域的显着成长主要推动了全球市场的发展。这可以透过不断增长的全球电力需求来支持,这种需求是由于人口增加、城市化和工业化推动的,特别是在发展中国家。随着经济的发展和成长,对可靠、高效的电力传输系统的需求大大增加。同时,永续发展趋势的兴起推动了新电力传输基础设施的发展,为市场提供了支持。同时,对现代化和升级的大量投资正在对需求产生积极影响。除此之外,监管政策的实施以及政府为提高能源效率和支持基础设施发展的措施也为市场做出了贡献。此外,主要参与者进行的广泛研究和开发 (R&D) 活动正在创造积极的市场前景。
无线设备的普及率不断提高
智慧型手机、穿戴式装置、电动牙刷和智慧手錶等无线设备的普及正在成为主要的市场驱动力。随着越来越多的设备加入无线充电功能,对无线电力传输基础设施和相容充电解决方案的需求也日益增长。无需单独使用充电器即可同时为多个装置充电的能力进一步推动了需求。由于无线电力传输消除了对实体电缆和连接器的需求,因此为充电或供电设备提供了便利和易用。使用者只需将装置放在充电板上或一定范围内即可开始充电,省去了处理电线缠绕和电源插座有限的麻烦。这一因素是无线电力传输的重要驱动因素,尤其是在消费性电子产品和智慧家庭应用中。
偏远地区快速电气化
在电力基础设施有限的地区或偏远地区,无线电力传输提供了一种提供电力的替代解决方案。无线电力传输无需大量布线或基础设施开发,可实现长距离电力传输,有助于解决扩大配电网路所带来的挑战,尤其是在发展中地区。无线充电提供了无缝整合和电源解决方案,无需频繁更换电池,并简化了智慧家庭、智慧城市和工业物联网应用中的部署。这使得无线充电成为恶劣环境、工业环境和安全性和可靠性至关重要的医疗应用中的首选。
技术进步和品牌差异化
企业逐渐认识到无线电力传输在提升整体用户体验和使其产品或服务差异化方面的价值。结合无线充电功能有助于吸引顾客、提高顾客满意度并建立品牌忠诚度。随着无线电力传输变得越来越普遍,各公司都在大力投资改善无线充电选项。此外,无线电力传输技术的不断进步,例如谐振电感耦合和射频(RF)技术,提高了效率、扩大了传输范围并降低了成本。除此之外,各组织的标准化工作正在为不同的无线充电技术建立标准,以实现设备和充电站之间的无缝相容,从而满足需求。
The global wireless power transmission market size reached USD 23.0 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 177.5 Billion by 2033, exhibiting a growth rate (CAGR) of 24.22% during 2025-2033. The market is expanding rapidly, due to the increasing demand for energy-efficient solutions, rising adoption of wireless power transmission in electric vehicles (EVs), growth in the consumer electronics industry, rapid advancements in technology, and significant investments in wireless charging infrastructure.
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.
Devices with battery dominate the market
Near-Field Technology dominates the market
Aftermarket dominates the market
Smartphones dominate the market
Consumer electronics dominates the wireless power transmission market
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.