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市場調査レポート
商品コード
1731731
自動車用バッテリー管理システムの市場規模:タイプ別、車種別、トポロジー別、地域別範囲と予測Automotive Battery Management System Market Size By Type (Lithium-Ion, Lead-Acid, Nickel), By Vehicle Type (Passenger Vehicles, Commercial Vehicles), By Topology (Centralized, Distributed, Modular), By Geographic Scope And Forecast |
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自動車用バッテリー管理システムの市場規模:タイプ別、車種別、トポロジー別、地域別範囲と予測 |
出版日: 2025年04月29日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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自動車用バッテリー管理システムの市場規模は、2024年に66億米ドルと評価され、2026年から2032年までのCAGRは16.27 %と予想され、2032年には220億3,000万米ドルに達すると予測されています。
バッテリー管理システム(BMS)は、二次電池の状態によって管理・監視される電子システムと定義されます。
このシステムにより、電池は安全動作領域外での動作から保護され、電池の状態が監視され、電池の寿命が推定されます。
さらに、セルバランシング、データロギング、外部機器との通信といった二次的な機能もBMSによって実行されることが指摘されています。
自動車用バッテリー管理システム市場を形成している主な市場力学は以下の通り:
電気自動車(EV)の普及拡大:電気自動車(EV)利用の増加は、自動車用バッテリー管理システム市場の主要促進要因です。国際エネルギー機関(IEA)によると、世界の電気自動車保有台数は2021年に1,650万台に達し、2018年から3倍以上に増加します。EVの急成長により、電気自動車用バッテリーの安全性、効率性、長寿命を保証する改良型バッテリー管理システムの需要が拡大しています。
バッテリー技術への投資の拡大:高度なバッテリー技術への多額の投資が、効果的なバッテリー管理システムの需要を押し上げています。米国エネルギー省によると、米国政府はバッテリー管理システムを含むバッテリー生産とサプライチェーンの革新を支援するため、2022年に31億米ドルを投資する予定です。この投資拡大により、自動車用BMSシステムの開発と統合が加速しています。
主な課題
高い開発コスト:高度なBMS技術には研究開発に多額の投資が必要です。こうした高コストのため、市場の成長は、特に小規模メーカーにとっては限定的です。
複雑な統合:BMSと既存の車両システムとの統合は複雑です。この複雑さのため、開発スケジュールは延長され、追加コストが発生しました。
信頼性の問題:過酷な条件下では、BMSコンポーネントの信頼性が損なわれます。このような信頼性への懸念から、消費者の信頼が損なわれ、採用率に影響が出ます。
主要動向:
AIと機械学習の統合:人工知能と機械学習アルゴリズムのBMSへの組み込みが進んでいます。これらの技術により、予知保全が可能になり、バッテリー寿命が最適化され、システム全体の効率が向上します。
クラウド接続:クラウドベースのBMSソリューションが開発されています。この接続性により、リアルタイムの監視が容易になり、データ分析が強化され、無線アップデートが可能になりました。
セカンドライフ・アプリケーション:セカンドライフ・アプリケーションにおける自動車用バッテリーの使用が検討されています。BMSによって、自動車用バッテリーの寿命後の代替用途への移行が促進されました。
Automotive Battery Management System Market size was valued at USD 6.6 Billion in 2024 and is projected to be reached at USD 22.03 Billion by 2032, with a CAGR of 16.27 % being expected from 2026 to 2032.
A Battery Management System (BMS) is defined as an electronic system that is managed and monitored by the state of a rechargeable battery.
By this system, the battery is protected from operating outside its Safe Operating Area, the battery state is monitored, and the battery's service life is estimated.
Furthermore, it is noted that secondary functions such as cell balancing, data logging, and communication with external devices are performed by the BMS.
The key market dynamics that are shaping the automotive battery management system market include:
Rising Adoption of Electric Vehicles (EVs): The rise in electric vehicle (EV) usage is a major driver of the automotive battery management systems market. According to the International Energy Agency (IEA), the worldwide electric vehicle fleet reached 16.5 million in 2021, more than tripling from 2018. The fast growth of EVs has created a larger demand for improved battery management systems to assure the safety, efficiency, and longevity of electric vehicle batteries.
Growing Investments in Battery Technology: Significant investments in sophisticated battery technology are driving up the demand for effective battery management systems. According to the US Department of Energy, the US government will invest $3.1 billion in 2022 to assist battery production and supply chain innovations, including battery management systems. This increased investment is accelerating the development and integration of BMS systems for automotive applications.
Key Challenges:
High Development Costs: Significant investment in research and development is required for advanced BMS technologies. Because of these high costs, market growth is limited, particularly for smaller manufacturers.
Complex Integration: The integration of BMS with existing vehicle systems is complicated. Because of this complexity, development timelines were extended, and additional costs were incurred.
Reliability Issues: In extreme conditions, the reliability of BMS components is compromised. Because of these reliability concerns, consumer confidence is affected, and adoption rates are impacted.
Key Trends:
AI and Machine Learning Integration: Artificial Intelligence and Machine Learning algorithms are being increasingly incorporated into BMS. With these technologies, predictive maintenance is enabled, battery life optimized, and overall system efficiency improved.
Cloud Connectivity: Cloud-based BMS solutions are being developed. By this connectivity, real-time monitoring was facilitated, data analytics enhanced, and over-the-air updates enabled.
Second-Life Applications: The use of automotive batteries in second-life applications is being explored. By BMS, the transition of batteries to alternative uses after their automotive life was facilitated.
The regional analysis of the automotive battery management system market:
Asia Pacific:
According to Verified Market Research, Asia Pacific is estimated to dominate the automotive battery management system market over the forecast period. The Asia-Pacific region, particularly China, dominates the global electric vehicle market, driving the demand for automotive battery management systems. According to the International Energy Agency (IEA), China accounted for more than 50% of the global EV stock, with over 7.8 million electric vehicles in 2021. This large-scale production and adoption of EVs in the region are significantly driving the demand for efficient and reliable battery management systems.
Governments in the Asia-Pacific region are actively promoting electric vehicles to reduce emissions and combat pollution. In 2020, China extended its subsidies for new energy vehicles (NEVs), including electric cars, until 2022, which has further spurred EV production. The Indian government's Faster Adoption and Manufacturing of Hybrid and Electric Vehicles (FAME) scheme aims to have 30% of vehicles electric by 2030. These policies are pushing the demand for battery management systems as EV production scales up in the region.
Furthermore, the Asia-Pacific region, led by countries like China, Japan, and South Korea, is a global hub for lithium-ion battery production, which requires advanced battery management systems. According to a report, China alone accounted for over 75% of the global lithium-ion battery manufacturing capacity in 2021. This dominance in battery production is increasing the demand for sophisticated BMS to ensure battery safety, efficiency, and performance in electric vehicles across the region.
North America:
The North American region is estimated to exhibit the highest growth during the forecast period. The growing adoption of electric vehicles in North America is a major driver for the automotive battery management system market. According to the U.S. Department of Energy, electric vehicle sales in the United States increased by 85% from 2020 to 2021, with more than 608,000 EVs sold in 2021 alone. This surge in EV adoption is directly driving the need for efficient battery management systems to optimize battery performance and ensure safety.
Supportive government policies and incentives aimed at promoting electric vehicle adoption are fueling the demand for BMS in North America. The U.S. government's Infrastructure Investment and Jobs Act (2021) allocates $7.5 billion for EV infrastructure, aiming to build a national network of 500,000 EV chargers by 2030. Such initiatives are boosting the growth of EVs and, consequently, the demand for advanced battery management systems in the region.
North America is witnessing significant investments in battery manufacturing, which is driving the BMS market. In 2022, General Motors and LG Energy Solution announced a $2.6 billion investment to build a new battery cell manufacturing plant in Michigan. Additionally, the U.S. Department of Energy committed $3.1 billion in 2022 to support the expansion of domestic battery manufacturing. These investments are increasing the demand for battery management systems to ensure the efficient and safe operation of automotive batteries.
The Global Automotive Battery Management System Market is segmented into Type, Vehicle Type, Topology, and Geography.
Based on Type, the automotive battery management system (BMS) market is segmented into Lithium-Ion, Lead-Acid, and Nickel. The lithium-ion segment is estimated to dominate the automotive BMS market due to its superior energy density, lightweight nature, and longer lifespan. Lithium-ion batteries are widely used in electric vehicles (EVs) and hybrid vehicles, offering higher performance and better charging efficiency compared to other battery types. Technological advancements have led to improvements in thermal management and safety features, further enhancing the adoption of lithium-ion batteries in automotive applications.
Based on Vehicle Type, the automotive battery management system (BMS) market is segmented into Passenger Vehicles and Commercial Vehicles. The passenger vehicles segment is estimated to dominate the automotive BMS market due to the rapid adoption of electric vehicles (EVs) and hybrid electric vehicles (HEVs) in the passenger vehicle sector. Passenger vehicles, particularly electric cars, have seen significant growth driven by increasing consumer demand for eco-friendly transportation and government incentives promoting EV adoption. Technological advancements in battery management systems have further enhanced the safety, efficiency, and range of EVs, making them more attractive to consumers. Furthermore, the rise in disposable incomes and environmental awareness is boosting the demand for EVs, cementing the dominance of passenger vehicles in the BMS market.
Based on Topology, the automotive battery management system (BMS) market is segmented into Centralized, Distributed, and Modular. The Modular segment is estimated to dominate the automotive BMS market due to its flexibility, scalability, and ability to manage multiple battery modules efficiently. Modular battery management systems are particularly well-suited for electric vehicles (EVs) with complex battery architectures, as they offer better fault tolerance and easily accommodate various battery pack sizes. As EV manufacturers continue to develop more advanced and high-capacity battery packs, modular BMS provides the adaptability needed for optimizing battery performance, safety, and reliability. Moreover, the modular architecture allows easier maintenance and upgrades, further reinforcing its market dominance.
Based on Geography, the automotive battery management system (BMS) market is segmented into Asia Pacific, Europe, North America, and Rest of the World. The Asia Pacific region is estimated to dominate the automotive BMS market due to the region's leadership in electric vehicle (EV) production, particularly in countries like China, Japan, and South Korea. China has become the global hub for electric vehicle manufacturing, accounting for over 50% of the world's EV stock as of 2021, according to the International Energy Agency (IEA). This massive scale of EV production in the Asia Pacific region drives the demand for advanced battery management systems to ensure optimal battery performance and safety.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.