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市場調查報告書
商品編碼
2106403
電動車無線充電市場預測(2034 年)—按組件、功率、安裝類型、車輛類型、技術、應用和地區分類的全球分析Wireless EV Charging Market Forecasts to 2034 - Global Analysis By Component (Transmitter, Receiver and Control Systems & Software), Power Output, Installation Type, Vehicle Type, Technology, Application and By Geography |
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全球電動車無線充電市場預計到 2026 年將達到 1 億美元,並在預測期內以 38.7% 的複合年成長率成長,到 2034 年將達到 15 億美元。
電動車無線充電技術利用安裝在路面上的發送器和安裝在車輛上的接收器之間的電磁感應原理,無需電纜即可傳輸能量。這種方法提高了易用性,最大限度地減少了人工操作,並增強了在包括家庭、職場和公共基礎設施在內的各種環境中的安全性。無論車輛是靜止還是在電氣化道路上行駛,無線充電都能正常運作,從而提供了柔軟性的充電模式。系統效率、定位精度和標準化方面的持續改進正在推動其更廣泛的應用。取消實體連接器減少了維護問題,增強了與智慧型能源系統的親和性,並支援便利、先進的電動出行解決方案的發展。
根據國際能源總署(IEA)的數據,到2024年,全球將新增超過130萬個公共電動車充電站,年增率超過30%。這表明支援無線電動汽車充電等技術的充電基礎設施正在快速擴張。
對便捷易用的充電解決方案的需求日益成長
隨著電動車日益普及,人們對更簡單的充電方式的需求也日益成長,而電動車無線充電正成為極具前景的替代方案。無需實體連接器,顯著提升了用戶體驗,讓各類用戶都能享受到便利的使用體驗。這種方式在都市區、共用停車場和職場尤其重要,因為在這些場所,便利的操作至關重要。無線系統能夠實現自動能量傳輸,最大限度地減少用戶操作,從而節省時間。隨著消費者對「便利體驗」和「更高效率」的期望不斷提高,無線充電技術的應用正在加速,推動整個市場的擴張。
高昂的安裝和基礎設施成本
電動車無線充電的普及受到部署和維護必要基礎設施相關高昂成本的限制。與傳統充電設備不同,無線系統需要嵌入式發送器、車載接收器和精密控制單元等先進組件,導致初始成本高。對現有設施(例如都市區道路和停車場)進行改造需要大規模的施工和技術調整,進一步增加了成本。這些經濟障礙可能會阻礙投資者和營運商的積極性,尤其是在發展中地區,從而限制大規模部署並減緩無線充電市場的整體成長。
動態無線充電基礎設施的擴展
行車無線充電基礎設施的出現為電動車無線充電市場帶來了巨大的成長潛力。這項創新技術允許車輛從嵌入道路的充電組件中獲取電力,從而減少了對固定充電站的依賴。這不僅緩解了人們對續航里程的擔憂,還允許使用更小的電池容量,並提高了營運效率。公共部門機構和基礎設施開發商正在積極開展試點試驗計畫,並在公共道路和高速公路上部署相關技術。隨著對智慧型運輸系統(ITS) 和電動出行領域投資的增加,這種方法有望重新定義能源輸送方式,開闢新的商業機遇,並推動無線充電技術的廣泛應用。
有線快速充電技術的快速發展加劇了競爭
有線快速充電解決方案的持續進步對電動車無線充電市場構成了重大挑戰。現代插電式充電器的效率日益提高,能夠實現快速能量傳輸並顯著縮短充電時間。其不斷擴展的基礎設施、不斷降低的成本以及高度標準化的管理,使其在與新興的無線充電方案的競爭中佔據優勢。這些系統已經高度整合並被廣泛接受,使其成為個人用戶和商用車輛的可靠選擇。然而,隨著對快速可靠充電需求的不斷成長,先進有線技術的強大影響力可能會減緩無線充電解決方案在不斷發展的電動車市場中的普及速度。
新冠疫情為電動車無線充電市場帶來了挑戰與機會。初期,全球供應鏈中斷、專案部署延誤以及基礎設施投資暫時下降阻礙了市場成長。旅行和工業活動的限制影響了生產,並減緩了技術進步。儘管面臨這些不利因素,疫情也促使人們重新認知到永續交通途徑和非接觸式解決方案的重要性。政府主導的經濟復甦措施以及對清潔能源日益成長的關注刺激了對電動車基礎設施的投資。因此,無線充電的需求逐漸增強,推動了市場的逐步復甦。
在預測期內,發送器細分市場預計將佔據最大的市場佔有率。
預計在預測期內,發送器部分將佔據最大的市場佔有率,因為它是為電動車發電和輸電的主要單位。這些設備安裝在停車場和道路等路面下方,並依靠先進的技術和高容量組件來確保高效的電力傳輸。它們在眾多充電站的廣泛安裝,使得其需求高於其他部分。堅固耐用的設計以及與電網無縫連接的需求,進一步提升了它們的作用。隨著充電基礎設施的不斷擴展,發送器將繼續成為電動車無線充電解決方案中最重要、最廣泛應用的組件。
預計在預測期內,商用和車隊充電領域將實現最高的複合年成長率。
在預測期內,受物流、公共交通和共享出行領域電動車快速普及的推動,商用和車隊充電市場預計將呈現最高的成長率。車輛管理公司正在尋求能夠提高生產力並減少停機時間的解決方案,因此無線充電成為極具吸引力的選擇。無線充電技術使車輛能夠在車庫和關鍵位置自動充電,無需人工操作。這項功能有助於更順暢的營運和更有效率的資源利用。隨著各組織加強對高效能、技術主導出行解決方案的投資,無線充電正成為首選,從而推動該細分市場的強勁成長。
在預測期內,亞太地區預計將佔據最大的市場佔有率,這主要得益於電動車的廣泛普及和對現代化充電基礎設施的大量投資。該地區各國政府正透過優惠的法規和大規模的電氣化項目來推動永續交通途徑的發展。人口密集的城市環境對便利、緊湊的充電方案有著強烈的需求,促進了無線充電解決方案的成長。此外,該地區匯集了許多大型汽車製造商和科技公司,也為技術的快速發展和應用做出了貢獻。持續的基礎設施擴建和政策支援將繼續鞏固亞太地區在電動車無線充電市場的主導地位。
在預測期內,北美預計將呈現最高的複合年成長率,這主要得益於對現代化電動車基礎設施的大量投資和持續的技術進步。在政府獎勵和環保目標的推動下,電動車的普及正穩步推進。人們對智慧交通、自動駕駛和連網系統的日益關注,正在推動對無線充電技術的需求。汽車製造商、科技公司和基礎設施提供者之間的合作正在推動創新和大規模部署。該地區高度重視用戶便利性、自動化和能源效率,正崛起為電動車無線充電解決方案成長最快的市場。
According to Stratistics MRC, the Global Wireless EV Charging Market is accounted for $0.1 billion in 2026 and is expected to reach $1.5 billion by 2034 growing at a CAGR of 38.7% during the forecast period. Wireless charging for electric vehicles allows energy transfer without cables by relying on electromagnetic induction between a surface-mounted transmitter and a vehicle-mounted receiver. This approach improves ease of use, minimizes manual handling, and enhances safety in various environments such as homes, workplaces, and public infrastructure. It can function when vehicles are stationary or moving over electrified roads, offering flexibility in charging patterns. Continuous improvements in system efficiency, positioning accuracy, and standardization are driving wider deployment. By eliminating physical connectors, it reduces maintenance issues and aligns well with smart energy systems, supporting the evolution of convenient and advanced electric mobility solutions.
According to the International Energy Agency, more than 1.3 million public EV charging points were added globally in 2024, representing over 30% annual growth, highlighting rapid expansion of charging infrastructure that supports technologies like wireless EV charging.
Increasing demand for convenient and user-friendly charging solutions
The rising popularity of electric vehicles is increasing the demand for simpler and more convenient charging options, positioning wireless EV charging as a favorable alternative. By removing the need for physical connectors, it enhances ease of use and accessibility for a wide range of users. This approach is especially valuable in cities, shared parking areas, and workplaces where effortless operation is essential. Wireless systems enable automatic energy transfer, minimizing user involvement and saving time. As consumer expectations shift toward hassle-free experiences and improved efficiency, the adoption of wireless charging technology is accelerating, thereby supporting the expansion of the overall market.
High installation and infrastructure costs
The expansion of wireless EV charging is constrained by the substantial costs involved in deploying and maintaining the required infrastructure. Unlike traditional charging setups, wireless systems demand advanced components such as embedded transmitters, onboard receivers, and sophisticated control units, leading to higher upfront expenses. Retrofitting current facilities, including urban roads and parking areas, requires extensive construction work and technical adjustments, further increasing costs. These economic barriers can discourage investors and operators, especially in developing regions, thereby restricting large-scale implementation and slowing the overall growth of the wireless charging market.
Expansion of dynamic wireless charging infrastructure
The emergence of in-motion wireless charging infrastructure offers significant growth potential for the wireless EV charging market. By allowing vehicles to receive power from charging components embedded in roadways, this innovation reduces dependence on stationary charging stations. It can help alleviate concerns about driving range, enable smaller battery capacities, and enhance operational efficiency. Public agencies and infrastructure developers are actively testing and implementing pilot programs on roads and highways. With rising investments in intelligent transport systems and electric mobility, this approach can reshape energy delivery methods, unlock new business opportunities, and support the widespread deployment of wireless charging technologies.
Competition from rapid advancements in wired fast charging technologies
The ongoing progress in wired fast charging solutions represents a major challenge for the wireless EV charging market. Modern plug-in chargers are increasingly efficient, offering rapid energy transfer and significantly shorter charging durations. Their expanding infrastructure, declining costs, and strong standardization provide a competitive edge over emerging wireless alternatives. These systems are already well-integrated and widely accepted, making them a dependable choice for both individual users and commercial fleets. As the demand for quick and reliable charging intensifies, the strong presence of advanced wired technologies could slow down the uptake of wireless charging solutions in the evolving electric vehicle landscape.
The outbreak of COVID-19 created both challenges and opportunities for the wireless EV charging market. In the early stages, growth was hindered by disruptions in global supply chains, delays in deployment projects, and a temporary decline in infrastructure spending. Restrictions on movement and industrial operations impacted production and slowed technological progress. Despite these setbacks, the pandemic reinforced the importance of sustainable transportation and touch-free solutions. Government-led recovery initiatives and increased emphasis on clean energy helped revive investments in electric vehicle infrastructure. As a result, demand for wireless charging gained traction over time, contributing to a gradual market recovery.
The transmitter segment is expected to be the largest during the forecast period
The transmitter segment is expected to account for the largest market share during the forecast period because it serves as the primary unit that produces and transfers energy to electric vehicles. Positioned under surfaces such as parking areas or roadways, it relies on sophisticated engineering and high-capacity components to enable effective power transmission. Its widespread installation across multiple charging locations increases its demand relative to other segments. The requirement for strong, long-lasting designs and seamless grid connectivity further enhances its role. With the ongoing growth of charging infrastructure, transmitters continue to be the most critical and extensively utilized element in wireless EV charging solutions.
The commercial & fleet charging segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the commercial & fleet charging segment is predicted to witness the highest growth rate, driven by the rapid adoption of electric vehicles in logistics, transit, and shared mobility sectors. Businesses managing fleets seek solutions that enhance productivity and reduce downtime, making wireless charging highly attractive. It allows vehicles to recharge automatically at depots and key locations without manual effort. This capability supports smoother operations and better resource utilization. As organizations invest in efficient and technology-driven mobility solutions, wireless charging is becoming a preferred option, leading to strong growth in this segment.
During the forecast period, the Asia-Pacific region is expected to hold the largest market share, driven by widespread electric vehicle adoption and substantial investments in modern charging infrastructure. Governments in this region are encouraging sustainable transportation through favourable regulations and extensive electrification programs. Dense urban environments create a strong need for convenient and compact charging options, supporting the growth of wireless solutions. Furthermore, the region benefits from the presence of major automotive and technology companies that contributes to rapid advancements and deployment. Ongoing infrastructure expansion and policy support continue to strengthen Asia-Pacific's leading position in the wireless EV charging market.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, driven by significant investments in modern EV infrastructure and continuous technological advancements. The adoption of electric vehicles is increasing steadily, supported by government incentives and environmental targets. Rising focus on intelligent transportation, autonomous mobility, and connected systems is boosting the need for wireless charging technologies. Partnerships among automakers, tech companies, and infrastructure providers are encouraging innovation and large-scale deployment. With a strong emphasis on user convenience, automation, and energy efficiency, the region is emerging as the most rapidly growing market for wireless EV charging solutions.
Key players in the market
Some of the key players in Wireless EV Charging Market include WiTricity Corporation, Plugless Power, HEVO Inc., Electreon Wireless Ltd., Continental AG, InductEV, Groupe Delachaux, ZTE Corporation, MAHLE Group, Mojo Mobility, Inc., WAVE Inc., ELIX Wireless, TGood Global Ltd., Daihen Corporation, Toshiba Corporation, INTIS GmbH, Weibo (Shanghai) New Energy Technology Co., Ltd. and Shenzhen Vmax New Energy Co., Ltd.
In November 2025, MAHLE signed a strategic cooperation agreement on a chassis project with Shanghai Jiapei, a leading benchmark company in China's automotive parts distribution and service sector. MAHLE will leverage Jiapei's strong channel advantages of 45 workshops to expand its China aftermarket activities around chassis replacement and servicing.
In October 2025, Continental AG has reached a deal with former managers that will see their insurance pay damages between 40 million and 50 million euros ($46.7 million-$58.3 million) in connection with the diesel scandal. The deal with insurers, subject to shareholder approval, covers only some of the total damages of 300 million euros.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) Regions are also represented in the same manner as above.