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市场调查报告书
商品编码
1701004
无线电动汽车充电市场规模、份额及成长分析(按推进类型、充电系统、应用和地区)- 产业预测,2025 年至 2032 年Wireless Electric Vehicle Charging Market Size, Share, and Growth Analysis, By Propulsion Type (Battery Electric Vehicle, Plug-In Hybrid Electric Vehicle ), By Charging System, By Application, By Region - Industry Forecast 2025-2032 |
2023 年无线电动汽车 (EV) 充电市场规模为 7,630 万美元,预计将从 2024 年的 1.1552 亿美元成长到 2032 年的 31.8902 亿美元,预测期内(2025-2032 年)的复合年增长率为 51.4%。
无线电动汽车充电技术利用电磁场实现高效电力传输,无需连接器或电缆即可将电能传输至电动车。这种创新方法支持固定充电和行动充电,提高了用户的便利性。此外,智慧无线充电系统可与智慧电网基础设施无缝集成,实现动态能源管理,根据电网需求和可再生能源可用性优化充电。例如,在需求低或可再生能源丰富时,这些系统可以经济高效地运作,平衡电网负载并降低尖峰时段能源需求。这种整合将促进永续能源消费,提高消费者和公用事业的整体效率,最终降低成本并建立更具弹性的能源生态系统。
Wireless Electric Vehicle (EV) Charging Market size was valued at USD 76.3 million in 2023 and is poised to grow from USD 115.52 million in 2024 to USD 3189.02 million by 2032, growing at a CAGR of 51.4% during the forecast period (2025-2032).
Wireless EV Charging technology enables the transfer of electrical energy to electric vehicles without connectors or cables, utilizing electromagnetic fields for efficient power transfer. This innovative method supports both stationary and in-motion charging, enhancing convenience for users. Furthermore, smart wireless charging systems can seamlessly integrate with smart grid infrastructure, allowing for dynamic energy management that optimizes charging based on grid demand and renewable energy availability. For instance, during low-demand periods or when renewable sources are abundant, these systems can operate cost-effectively, balancing grid loads and reducing peak energy demand. This integration fosters sustainable energy consumption and enhances overall efficiency for both consumers and utility providers, ultimately leading to lower costs and a more resilient energy ecosystem.
Top-down and bottom-up approaches were used to estimate and validate the size of the Wireless Electric Vehicle (EV) Charging market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.
Wireless Electric Vehicle (EV) Charging Market Segments Analysis
Global Wireless Electric Vehicle (EV) Charging Market is segmented by Propulsion Type, Charging System, Charging Type, Component, Power Supply, Vehicle Type, Distribution Channel, Application and region. Based on Propulsion Type, the market is segmented into Battery Electric Vehicle (BEV), Plug-In Hybrid Electric Vehicle (PHEV) and Others. Based on Charging System, the market is segmented into Magnetic Power Transfer, Inductive Power Transfer and Capacitive Power Transfer. Based on Charging Type, the market is segmented into Dynamic Wireless Charging System and Stationary Wireless Charging System. Based on Component, the market is segmented into Base Charging Pad, Power Control Unit, Vehicle Charging Pad and Battery Management Systems. Based on Power Supply, the market is segmented into 3-11KW, 11-50KW and Less than 50KW. Based on Vehicle Type, the market is segmented into Passenger Vehicles, Passenger Cars, Commercial Vehicle, Light Commercial Vehicles, Heavy Commercial Vehicles, Passenger Vehicles, Others and Electric Two-wheelers. Based on Distribution Channel, the market is segmented into Aftermarket and OEM. Based on Application, the market is segmented into Commercial Charging Stations and Home Charging Unit. Based on region, the market is segmented into North America, Europe, Asia Pacific, Latin America and Middle East & Africa.
Driver of the Wireless Electric Vehicle (EV) Charging Market
The global Wireless Electric Vehicle (EV) Charging market is experiencing significant growth driven by government investments in wireless charging infrastructure. Such financial support, including subsidies and grants, facilitates advancements in wireless technology and promotes sustainable transportation solutions. The benefits of fully autonomous systems, along with the reduction of bulky structures and enhanced safety features, align perfectly with the needs of urban environments. Additionally, dynamic wireless charging allows electric vehicles to charge while in motion, contributing to space optimization in densely populated cities and making the technology increasingly attractive for future urban mobility solutions.
Restraints in the Wireless Electric Vehicle (EV) Charging Market
A significant challenge facing the global wireless electric vehicle (EV) charging market is the low coupling efficiency between the charging transmitter and receiver. This inefficiency hampers the amount of power transferred during the charging process, leading to longer charging times and diminished energy efficiency. Additionally, factors such as decreased reliability and slower system performance can pose substantial obstacles to the adoption and effectiveness of wireless EV charging solutions. These limitations can hinder user satisfaction and overall market growth, making it crucial for industry stakeholders to address these issues to enhance performance and encourage wider acceptance of wireless charging technologies.
Market Trends of the Wireless Electric Vehicle (EV) Charging Market
The Wireless Electric Vehicle (EV) Charging market is witnessing a notable trend characterized by escalating investments in high-capacity wireless charging technologies. Manufacturers are focusing on innovations that enable faster and more robust charging solutions, essential for enhancing charging infrastructure across both personal and commercial sectors. A pioneering advancement from Oak Ridge National Laboratory and Volkswagen, featuring a 270-kW system, exemplifies this shift-significantly reducing downtime and catering to high-demand applications like fleet services and public transport. This technological progress is crucial for supporting the growing adoption of electric vehicles, thereby shaping a more sustainable future in transportation.