市場調查報告書
商品編碼
1569880
到 2030 年電動車隊充電市場預測:按組件、營運、充電基礎設施類型、直流快速充電類型、充電服務、最終用戶和地區進行的全球分析Electric Fleet Charging Market Forecasts to 2030 - Global Analysis by Component (Hardware, Software and Other Components), Operation, Charging Infrastructure Type, DC Fast Charging Type, Charging Service, End User and By Geography |
根據Stratistics MRC的數據,2024年全球電動車隊充電市場規模為34.5億美元,預計到2030年將達到41.4億美元,預測期內複合年成長率為20.13%。
電動車隊充電是指為商業或上市公司使用的電動車 (EV) 充電的過程,例如送貨卡車、巴士和公司用車。這包括安裝充電站等專用基礎設施,以有效管理整個車隊的能源需求。該系統還可能包括慢速和快速充電器,具體取決於車輛的使用情況。車隊充電系統通常包括監控能耗、最佳化充電時間表並利用非高峰電費降低成本的軟體。
政府獎勵
政府對電動車購買和充電基礎設施安裝的稅額扣抵、回扣和補貼等獎勵正在推動電動車在商業車隊的採用。獎勵有助於抵消電動車和充電站的高前期成本,使企業更負擔得起。此外,強制要求在公共場所和新建築安裝充電站的法規進一步推動充電基礎設施市場的擴張。
充電基礎設施有限
充電基礎設施有限車輛需要可靠且廣泛使用的充電站來保持營運的一致性,但缺乏足夠的基礎設施限制了路線的靈活性,從而增加了停機時間。結果是充電等待時間較長,為管理大型電動車隊帶來了後勤挑戰。此外,由於續航里程問題,基礎設施不足阻礙企業採用電動車,進一步減緩市場成長並阻礙商業運輸的廣泛電氣化。
政府對基礎建設發展的支持
政府對基礎設施的支持為安裝充電站提供了必要的獎勵和資金。稅額扣抵、補貼和津貼等舉措減輕了車隊營運商的財務負擔,並促進向電動車(EV)的過渡。例如,國家電動車基礎設施等計劃為安裝充電基礎設施提供大量稅額扣抵。此外,要求在公共區域安裝充電站的法規將改善可及性,從而提高電動車的滲透率和使用率,並加強市場成長和永續性努力。
與替代燃料的競爭
與氫、生質燃料和天然氣等替代燃料競爭通常是減少排放的經濟有效的解決方案。與電動車 (EV) 充電相比,這些替代燃料可能具有更低的基礎設施成本、更高的能量密度和更短的加油時間。此外,政府對替代燃料的激勵和補貼可能會轉移對電動車充電基礎設施的投資,並減緩電動車的成長和市場滲透率。這場競爭最終使電動車的廣泛採用變得更加複雜。
COVID-19 大流行影響了電動車隊充電市場,導致基礎設施計劃延誤、車輛需求減少和供應鏈中斷。由於企業暫停了對新車的投資,封鎖和旅行限制減緩了電動車的採用。此外,全球半導體短缺阻礙了電動車的生產,並影響了充電站的需求。然而,疫情加速了人們對永續實踐的興趣,各國政府推出了包括綠色交通獎勵在內的復甦計畫。由於人們對汽車電氣化的永續性和長期彈性重新產生興趣,市場預計將隨著經濟復甦而復甦。
預計硬體產業在預測期內將是最大的。
由於車輛電氣化的重要基礎設施,預計硬體在預測期內將是最大的。充電硬體的技術進步(例如更快、更有效率的充電器)使車隊能夠最大限度地減少停機時間並最佳化營運。隨著電動車 (EV) 需求的增加,對能夠處理商務用負載的高容量充電系統的需求也在增加。硬體解決方案的多樣化,包括無線充電器和超快充電器,提高了充電基礎設施的擴充性,直接有助於市場擴張。
預估電子商務領域在預測期間內複合年成長率最高
由於對高效和永續運輸解決方案的需求不斷成長,預計電子商務行業在預測期內將出現最高的複合年成長率。隨著網路購物的擴大,對大型送貨車輛的需求也增加。許多公司正在轉向電動車 (EV),以降低營運成本並滿足環境法規。電動車隊可降低燃料和維修成本,同時實現永續性目標。此外,政府和企業正在獎勵向綠色物流轉型,進一步促進電動車的採用並加速市場成長。
由於電動車(EV)普及率的提高和充電基礎設施投資的增加,預計北美將在預測期內佔據最大的市場佔有率。稅收優惠和排放法規等政府政策正在鼓勵車隊營運商轉向電動車。主要城市正在擴大充電網路,以支持不斷成長的電動送貨和運輸車輛數量。儘管面臨初始成本高和基礎設施發展緩慢等挑戰,但隨著永續性和技術進步繼續塑造該地區的交通格局,該市場有望實現成長。
由於快速的都市化、政府激勵措施和不斷提高的環境意識,預計亞太地區在預測期內將保持最高的複合年成長率。中國和日本等國家在電動車 (EV) 基礎設施方面透過大量投資和支持政策處於主導地位。中國減少排放和擴大電動車持有的努力尤其具有影響力,而日本則專注於將電動車納入其先進的大眾交通工具系統。此外,在都市區空氣品質問題和經濟效益的推動下,東南亞新興市場正逐漸採用電動車。
According to Stratistics MRC, the Global Electric Fleet Charging Market is accounted for $3.45 billion in 2024 and is expected to reach $4.14 billion by 2030 growing at a CAGR of 20.13% during the forecast period. Electric fleet charging refers to the process of recharging a group of electric vehicles (EVs) used for commercial or public operations, such as delivery trucks, buses, or company cars. It involves setting up dedicated infrastructure, like charging stations, to efficiently manage energy needs for the entire fleet. This system may include both slow and fast chargers, depending on vehicle usage. Fleet charging systems often incorporate software to monitor energy consumption, optimize charging schedules, and reduce costs by taking advantage of off-peak electricity rates.
Government incentives
Government incentives such as tax credits, rebates, and subsidies for EV purchases and charging infrastructure installation are promoting the adoption of electric vehicles in commercial fleets. Incentives are helping to offset the higher upfront costs of EVs and charging stations, making them more affordable for businesses. Additionally, regulations mandating the installation of charging points in public places and new buildings are further driving the expansion of the charging infrastructure market.
Limited charging infrastructure
Limited charging infrastructure of fleets require reliable, widespread charging stations to maintain operational consistency, but the lack of sufficient infrastructure limits route flexibility and increases downtime. This results in longer wait times for charging and logistical challenges in managing large electric fleets. Additionally, inadequate infrastructure discourages companies from adopting electric fleets due to concerns over range anxiety, further slowing the market's growth and hindering widespread electrification of commercial transportation.
Government support for infrastructure development
Government support for infrastructure development provides essential incentives and funding for charging station installations. Initiatives such as tax credits, grants, and subsidies lower the financial burden on fleet operators, encouraging the transition to electric vehicles (EVs). For instance, programs like the National Electric Vehicle Infrastructure offer substantial tax credits for charging infrastructure setup. Additionally, regulatory mandates for charging points in public areas enhance accessibility, thereby increasing EV adoption and utilization rates, which collectively bolster market growth and sustainability efforts.
Competition from alternative fuels
Competition from alternative fuels, such as hydrogen, biofuels, and natural gas are often cost-effective solutions for reducing emissions. These alternatives may have lower infrastructure costs, better energy density, or shorter refueling times compared to electric vehicle (EV) charging. Additionally, government incentives and subsidies for alternative fuels can divert investment away from EV charging infrastructure, slowing its growth and market adoption. This competition ultimately complicates the path toward electric fleet expansion.
The COVID-19 pandemic impacted the electric fleet charging market by causing delays in infrastructure projects, reduced vehicle demand, and disrupted supply chains. Lockdowns and travel restrictions slowed the adoption of electric fleets as businesses paused investments in new vehicles. Additionally, the global semiconductor shortage hindered EV production, affecting the demand for charging stations. However, the pandemic also accelerated interest in sustainable practices, with governments introducing recovery plans that include incentives for green transportation. As economies recover, the market is expected to rebound, driven by renewed focus on sustainability and fleet electrification for long-term resilience.
The hardware segment is expected to be the largest during the forecast period
The hardware is expected to be the largest during the forecast period due to essential infrastructure for fleet electrification. Technological advancements in charging hardware, such as faster efficient chargers, enable fleets to minimize downtime and optimize operations. As demand for electric vehicles (EVs) increases, so does the need for high-capacity charging systems that can handle the load of commercial fleets. The growing variety of hardware solutions, including wireless and ultra-fast chargers, enhances the scalability of charging infrastructure, directly contributing to the market's expansion.
The E-commerce segment is expected to have the highest CAGR during the forecast period
The E-commerce segment is expected to have the highest CAGR during the forecast period by increasing demand for efficient, sustainable delivery solutions. As online shopping grows, so does the need for large delivery fleets. Many companies are transitioning to electric vehicles (EVs) to reduce operational costs and meet environmental regulations. EV fleets lower fuel expenses and maintenance costs, while aligning with sustainability goals. Additionally, governments and corporations are incentivizing the shift to green logistics, further boosting the adoption of EVs, accelerating market growth.
North America is projected to witnesss the largest market share during the forecast period due to rising adoption of electric vehicles (EVs) and increased investments in charging infrastructure. Government policies, such as tax incentives and emission regulations, are driving fleet operators to transition to electric vehicles. Major cities are expanding their charging networks to support the growing number of electric delivery and transit fleets. Despite challenges like high initial costs and infrastructure development delays, the market is poised for growth as sustainability and technological advancements continue to shape the region's transportation landscape.
Asia Pacific is projected to hold the highest CAGR over the forecast period because of rapid urbanization, government incentives, and increasing environmental awareness. Countries like China and Japan are leading the charge with substantial investments in electric vehicle (EV) infrastructure and supportive policies. China's commitment to reducing emissions and expanding its EV fleet is particularly influential, while Japan focuses on integrating EVs into its advanced public transportation systems. Additionally, emerging markets in Southeast Asia are gradually adopting electric fleets, spurred by urban air quality concerns and economic benefits.
Key players in the market
Some of the key players in Electric Fleet Charging market include ABB , Blink Charging, BP Pulse, ChargePoint, Electrify America, Enel X, ENGIE EVBox, EVBox, EVgo, Greenlots (A Shell Company), IONITY, Pod Point, Schneider Electric, SemaConnect, Shell Recharge, Siemens eMobility, Tesla, Tritium, Volta Charging and WiTricity.
In May 2024, ABB expanded electrification portfolio with acquisition of Siemens' Wiring Accessories business. The acquisition had broadened ABB's market reach and complements its regional customer offering within smart buildings.
In February 2024, ABB announced an agreement to acquire SEAM Group, a major provider of energized asset management. The acquisition brought significant additional expertise to customers in the areas of predictive, preventive, and corrective maintenance.
In January 2024, ABB announced to acquire Canadian company Real Tech, a leading supplier of innovative optical sensor technology that enables real-time water monitoring. Through the acquisition, ABB expands its strong presence in the water segment and complement its product portfolio with optical technology critical for smart water management.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.