![]() |
市場調査レポート
商品コード
1614024
電気自動車用バッテリーシステム市場- 世界の産業規模、シェア、動向、機会、予測、セグメント、バッテリータイプ別、車両タイプ別、地域別、競合、2019年~2029年Battery Systems for Electric Vehicles Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Battery Type, By Vehicle Type, By Region & Competition, 2019-2029F |
||||||
カスタマイズ可能
|
電気自動車用バッテリーシステム市場- 世界の産業規模、シェア、動向、機会、予測、セグメント、バッテリータイプ別、車両タイプ別、地域別、競合、2019年~2029年 |
出版日: 2024年12月13日
発行: TechSci Research
ページ情報: 英文 183 Pages
納期: 2~3営業日
|
電気自動車用バッテリーシステムの世界市場は、2023年までに318億1,000万米ドルを達成し、CAGR 14.22%で拡大し、2029年までに701億1,000万米ドルを達成すると予測されます。
この市場の大幅な成長は、政府支援の強化、バッテリー技術の最先端開発、持続可能な輸送ソリューションへの注目の高まりなど、いくつかの要因によるものです。数多くの政府が、二酸化炭素排出を最小限に抑え、電気自動車(EV)の利用を促進することを目的としたイニシアチブを通じて、市場拡大を推進しています。EVの普及を奨励する政策や刺激策は、バッテリーシステムの需要を顕著に高めると予想されます。継続的な研究開発努力により、エネルギー密度の高いバッテリー、急速充電機能、距離の延長など、バッテリー技術に大きなブレークスルーがもたらされ、消費者にとってEVがより魅力的なものとなっています。COVID-19後の経済が回復するにつれて、個人消費の回復と持続可能性と環境責任の重視の強化に支えられ、その勢いは加速します。特にアジア太平洋や北米などの地域で充電インフラの開発が進んでいることも、世界電気自動車用バッテリーシステム市場の力強い成長軌道を後押ししています。
市場概要 | |
---|---|
予測期間 | 2025-2029 |
市場規模:2023年 | 318億1,000万米ドル |
市場規模:2029年 | 701億1,000万米ドル |
CAGR:2024年~2029年 | 14.22% |
急成長セグメント | 商用車 |
最大市場 | 北米 |
政府の取り組みと支援
バッテリー技術の進歩
高コストと走行距離の制限
不十分な充電インフラ
政府の投資と政策
研究開発への注力
The Global Battery Systems for Electric Vehicles Market is forecasted to achieve USD 31.81 Billion by 2023, expanding at a CAGR of 14.22% to attain USD 70.11 billion by 2029. The substantial growth in this market is attributed to several factors, including augmented government support, cutting-edge developments in battery technologies, and a heightened focus on sustainable transportation solutions. Numerous governments are driving market expansion through initiatives aimed at minimizing carbon emissions and fostering the use of electric vehicles (EVs). Policies and stimulus programs encouraging the uptake of EVs are expected to notably bolster the demand for battery systems. Ongoing research and development endeavors are leading to significant breakthroughs in battery technology, such as batteries with greater energy density, quicker charging capabilities, and extended range, which make EVs more attractive to consumers. As economies recover post-COVID-19, the momentum accelerates, supported by renewed consumer spending and a stronger emphasis on sustainability and environmental responsibility. The progressive development of charging infrastructure, particularly across regions like Asia-Pacific and North America, also reinforces the strong growth trajectory of the Global Battery Systems for Electric Vehicles Market.
Market Overview | |
---|---|
Forecast Period | 2025-2029 |
Market Size 2023 | USD 31.81 Billion |
Market Size 2029 | USD 70.11 Billion |
CAGR 2024-2029 | 14.22% |
Fastest Growing Segment | Commercial Vehicle |
Largest Market | North America |
Key Market Drivers
Government Initiatives and Support
Governments worldwide are actively pursuing decarbonization and sustainable transportation, significantly driving the expansion of the battery systems for electric vehicles market. Significant investments by governments in developed nations, such as China, the United States, and Japan, focus on electric mobility. These investments are presented as subsidies for consumers purchasing electric vehicles and in the development of necessary infrastructure, like charging stations. For example, the Sustainable Energy Authority of Ireland (SEAI) offers grants up to USD 5,400 and vehicle registration tax exemptions for buyers of battery electric vehicles. Such encouraging measures aim to make electric vehicles more financially accessible and appealing to the general populace. Furthermore, stringent regulations concerning emission controls are incentivizing automobile manufacturers to shift toward electric mobility. This transition stimulates advances and innovations in battery technologies, accelerating growth in the battery systems market.
Advancements in Battery Technology
The progression in battery technology is a crucial driver of the market. Noteworthy improvements in lithium-ion battery technologies have demonstrated substantial potential by providing higher energy densities, shorter charging times, and longer ranges for electric vehicles. Innovations, such as the technology developed by Morand, which reduces charging times of electric vehicles to around 72 seconds using a hybrid system that combines conventional battery technology with ultracapacitor technology, underscore the future potential of battery systems. These advancements not only enhance electric vehicles' performance but also address consumer concerns about range anxiety and lengthy charging durations. Such technological progress is essential for increasing the competitiveness of battery electric vehicles against internal combustion engine (ICE) vehicles, thereby boosting the growth of the battery systems market.
Key Market Challenges
High Costs and Limited Driving Range
Several significant challenges impede the market's growth, with high costs and limited driving range of batteries being primary barriers. Despite government subsidies and incentives, the total cost of electric vehicles remains high mainly due to expensive battery components. The price per usable kilowatt-hour of a lithium-ion battery can range from USD 500 to USD 650, which constitutes a large portion of the vehicle's overall cost. This cost factor makes electric vehicles less economically attractive compared to traditional ICE vehicles. Additionally, the current limited driving range, typically between 60-100 miles per charge, deters consumers who worry about running out of power mid-journey. These limitations are especially problematic for long-distance travelers and residents in regions with inadequate charging infrastructure.
Insufficient Charging Infrastructure
The lack of a comprehensive charging infrastructure presents another significant challenge. Many areas still do not have the required network of charging stations to support a growing number of electric vehicles. This infrastructural gap leads to range anxiety among potential buyers, limiting the broader adoption of electric vehicles. Moreover, the longer time required to fully charge a battery compared to refueling an ICE vehicle adds to consumer reservations. Although progress is being made towards developing faster-charging technologies, widespread deployment remains a hurdle. Developing an extensive network of supercharging stations capable of reducing downtime and facilitating long-distance travel is crucial to overcoming this challenge and supporting the broader adoption of electric vehicles.
Key Market Trends
Government Investments and Policies
A prominent trend driving the market for battery systems for electric vehicles is the ongoing investment and policy support from governments worldwide. Governments in developed nations recognize electric mobility as a fundamental component of their strategies to lower carbon emissions and combat climate change. Consequently, various financial incentives, subsidies, and grants are being offered to encourage electric vehicle adoption. Moreover, governments are investing in developing charging infrastructure, crucial for addressing range anxiety and supporting the widespread use of electric vehicles. These measures are expected to significantly influence the battery systems market's growth over the next several years.
Focus on Research and Development
Another key trend is the significant focus on research and development aimed at advancing battery technology. Companies and research institutes are allocating substantial resources to develop batteries with higher energy density, enhanced safety, and faster charging capabilities. Innovations, such as the lithium-air battery system devised by the US Department of Energy's Argonne National Laboratory, highlight the potential for considerable enhancements in electric vehicle batteries' efficiency and performance. Continuous innovation in this field is essential for making electric vehicles more competitive with traditional ICE vehicles, thereby driving demand for advanced battery systems.
Segmental Insights
Based on Battery Type, Lithium-ion batteries dominated the global battery systems for electric vehicles (EVs) market due to their superior performance characteristics, including high energy density, long cycle life, and light weight. These batteries are more efficient compared to other battery types, allowing electric vehicles to achieve longer ranges, which is a key consideration for both manufacturers and consumers. Lithium-ion batteries can store a significant amount of energy in a relatively small and lightweight form, which is crucial for improving the efficiency and performance of EVs. Moreover, advancements in lithium-ion battery technology, such as improvements in battery chemistry, charging speed, and safety features, have made them even more suitable for electric vehicles. The declining cost of lithium-ion batteries, driven by economies of scale and technological progress, has also played a critical role in making electric vehicles more affordable and accessible to a wider consumer base. The growing push for sustainability and stricter emission regulations worldwide has further accelerated the adoption of EVs, driving demand for high-performance lithium-ion batteries. These factors, combined with the continuous development of charging infrastructure and the increasing availability of EV models, ensure that lithium-ion batteries will remain the dominant choice for electric vehicle manufacturers in the foreseeable future.
Regional Insights
North America, alongside Asia-Pacific, is expected to dominate the battery systems market throughout the forecast period. The region places a strong emphasis on research and development, with governments providing substantial support for electric mobility initiatives. Investments in charging infrastructure and the presence of leading technology companies contribute to the region's strong market dynamics. Collaborative efforts between private sector players and governments to establish charging stations and implement smart grid solutions highlight initiatives to address range anxiety and enhance the electric vehicle experience. The Asia-Pacific region, comprising countries like China, Japan, and South Korea, is experiencing significant growth in the battery systems for electric vehicles market. Governments in these nations actively promote electric vehicle adoption through supportive policies, subsidies, and infrastructure development. In May 2023, for instance, Chinese automaker JAC Group partnered with tech company HiNa Battery to develop an electric car powered by a sodium-ion battery, indicating regional innovation and advancements. The well-established supply chain, skilled workforce, and innovative battery technology companies position Asia-Pacific as a major manufacturing hub for electric vehicles and their components, contributing to the market's rapid growth.
In this report, the global Battery Systems for Electric Vehicles Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies presents in the global Battery Systems for Electric Vehicles Market.
Global Battery Systems for Electric Vehicles Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: