市场调查报告书
商品编码
1394580
全球汽车电池管理系统 (BMS) 市场评估:按组件、拓扑、电池类型、车辆类型、地区、机会、预测(2016-2030 年)Automotive Battery Management System Market Assessment, By Component, By Topology, By Battery Type, By Vehicle Type, By Region, Opportunities and Forecast, 2016-2030F |
全球汽车电池管理系统 (BMS) 市场规模将从 2022 年的 58.5 亿美元增至 2030 年的 152 亿美元,2023-2030 年预测期内复合年增长率为 12.68%,成长预期。
汽车 BMS 的高需求源自于电动车的普及。 随着电池取代纯电动车和插电式混合动力汽车等电动车中的内燃机,对 BMS 解决方案的需求预计将会增加。 配备内燃机 (ICE) 的汽车需要电池来点燃引擎并优化照明、资讯娱乐和传输系统等辅助功能的配电。
2023 年 8 月,LOHUM 和 Vecmocon 合作加速电动车电池的采用。 该合作伙伴关係为电动车提供了由人工智慧驱动的电池管理系统(BMS)。 两家公司的目标是到 2025 年为超过 10 万个电池提供动力。 Vecmocon 将整合关键资料属性,LOHUM 在提高电池寿命方面的经验预计将增加价值。
自从推出电动车以来,电池及其组件已经更新。 随着新型强大电池提高了车辆的性能,电动车正在成为内燃机汽车的替代品。 电动车製造商不断努力提高电池性能、寿命和健康状况。 电动车销量的成长推动了锂离子电池的销售,这需要先进的电池管理系统 (BMS) 来监控和提高其性能。 天然气和汽油价格的上涨以及燃烧化石燃料对环境的影响正在影响消费者的选择。 最终用户正在采用高效、实惠且无污染的运输方式。 随着电池能量密度随着快速充电站的变化而变化,电池製造商正在将其电池设置与 BMS 等智慧型系统整合。 随着电动车销量的增加,对延长电池寿命的需求也增加。 BMS 提供的卓越能源管理正在协助改变电池技术。 供应商继续采用机器学习和人工智慧等新兴技术来推进 BMS 解决方案。
2023 年 11 月,Infineon和 Eatron 合作为电动车製造商推进电池管理系统 (BMS)。 预计这些公司将使用机器学习技术来解决关键技术挑战,例如续航里程、电池健康状况和充电速度。 此次合作为 Aurix TC4x 微控制器 (MCU) 带来了先进的机器学习解决方案和演算法。
无线 BMS 解决方案已成为新的创新市场理念。 虽然电池管理系统 (BMS) 与人工智慧和机器学习的轻鬆整合正在为产业增加价值,但无线技术有望改变市场。
2023年2月,LG Innotek大幅增加了无线BMS解决方案的产量。 公司开发了该领域首款800V无线BMS。 该公司推出这款WBMS解决方案,可节省10-15%的电池组空间并增加整体电池容量。 无线 BMS 将电动车的续航里程增加多达 12 英里。
世界各国政府都在努力减少燃烧化石燃料的有害影响。 从这些燃料转向替代燃料和电动交通正在帮助该机构实现其目标。 由于电动车(包括摩托车和四轮汽车)是新系统,因此其功能也存在问题。 电池故障、电动车起火和其他类似问题的频繁发生正在促使世界各国政府引起注意。 政府已命令电动车製造商采取预防措施,并呼吁召回涉嫌有缺陷的电动车型号。 政府干预电动车製造的核心是采用 BMS 和其他电池监控解决方案。
2022年4月,印度政府公布了电动车电池更换政策草案。 该保单涵盖两轮车和三轮车,并适用于先进化学电池(ACC)。 该政策草案强调了展示电动车零件和电池之间端到端相容性的重要性。 该政策强调需要与BMS相容的电池以提高车辆安全性。 根据指导方针,政府要求电动车製造商自愿召回 7,000 辆有缺陷的电动车。
本报告研究和分析了全球汽车电池管理系统 (BMS) 市场,提供市场规模和预测、市场动态以及主要参与者的现状和前景。
Global automotive battery management system (BMS) market size was valued at USD 5.85 billion in 2022, expected to reach USD 15.2 billion in 2030, with a CAGR of 12.68% for the forecast period between 2023 and 2030.
Battery is important in any vehicle's functionality, delivering power to different systems. The battery management systems help monitor battery health, operability, condition, and other updates. It monitors the battery health and protect it from overpowering and over charging scenarios. The higher demand for automotive BMS is attributed to the increased adoption of electric vehicles. As batteries supplant the internal combustion engine in BEVs, PHEVs, and other electric vehicles, the demand for BMS solutions is anticipated to rise. Vehicles equipped with internal combustion engines (ICE) necessitate a battery for engine ignition and to optimize power distribution for supplementary features such as lighting, infotainment, and transmission systems.
The battery management systems ensure the battery health and longevity while improving the performance. It optimizes the battery so that each cell is operated within its ideal voltage and temperature range, delivering streamlined power to the system. The accurate information delivered by BMS helps in enhanced range estimation, enabling end user to make smart decisions. The automotive BMS saves battery from getting over-charged, while reducing the energy waste to enhance the overall vehicle efficiency. The constantly improving automotive technology adds new components for efficient and effective vehicle performance.
In August 2023, LOHUM and Vecmocon partnered to speed-up the EV battery adoption. The combined efforts offered an AI-powered battery management system for electric vehicles. The companies are targeting to power over 100,000 batteries by 2025. Vecmocon is expected to integrate the crucial data attributes while LOHUM's experience around enhancing battery life will add value.
Even since the advent of electric vehicles, the batteries and their components have been updated. EVs are becoming an alternative to the IC engine-based vehicles as new and powerful batteries increase the vehicle capacity. The EV companies constantly try to increase battery performance, life, and health. The increasing sales of EVs are flourishing the sales of lithium-ion batteries that require sophisticated battery management system to monitor and enhance their performance. The rising gas and petrol prices and the environmental impact of fossil fuel burning are impacting consumer choices. End-users are adopting efficient, affordable, and non-polluting modes of transport. With changing energy density in batteries along with the fast-charging stations, the battery manufacturers are integrating the battery setup with smart systems like BMS. As the sales of EVs rise, the demand for extended battery lifespan is rising. The better energy management delivered through BMS is a part of transforming battery technology. Vendor companies continue adopting the latest technologies like machine learning and artificial intelligence for advancing BMS solutions.
In November 2023, Infineon and Eatron partnered to advance their battery management system for EV manufacturers. The companies are expected to use machine learning technology to resolve major technological challenges such as range anxiety, battery health, and charging speed. The partnership brings advanced machine learning solutions and algorithms to the Aurix TC4x microcontroller (MCU).
The wireless BMS solutions are the latest addition to innovative market ideas. While easy integration of battery management systems with artificial intelligence and machine learning has added value to the industry, wireless technology will transform the market. Casually known as wBMS, the solution includes wireless cell monitoring controller (wCMC) unit for each battery module. It enables electronic control unit to connect multiple battery modules wirelessly. Advanced servicing, second life, disposal, and advanced data management are some benefits that the wBMS delivers to the end users. The wBMS removes the BMS signal wire harnessing to allow for automated and robotic battery pack manufacturing.
In February 2023, the LG Innotek drastically increased the production of its wireless BMS solutions. The company developed 800V wireless BMS for the first time in the sector. The company has launched these WBMS solutions to save 10-15% of the battery pack space, increasing the overall battery capacity. The wireless BMS increased the mileage of an electric vehicle by up to 12 miles.
The governments around the world are trying to reduce the hazardous impact of fossil fuel burning. The transition from these fuels to alternative fuel and electric transportation has helped the authorities complete their goal. As the EVs, including two-wheelers and four-wheelers, are new to the system, certain challenges relate to their functionality. The frequent cases of faulty batteries, EVs catching fire, and other similar challenges have alerted governments across the globe. The governments order EV manufacturers to adopt preventive measures while asking them to recall the alleged faulty EV models. The highlight of the government interference in EV manufacturing involves adopting BMS and other battery monitoring solutions.
In April 2022, the Indian government launched its EV battery-swapping draft policy. The policy targets 2-wheelers and 3-wheelers and is applicable to the Advanced Chemistry Cell (ACC). The policy draft highlighted the importance of demonstrating end-to-end compatibility between EV components and batteries. The policy highlighted the requirement of BMS-enabled batteries to increase vehicle safety. Following these same guidelines, the government asked EV manufacturers to recall 7000 faulty EVs voluntarily.
Based on battery type, lithium-ion battery performs significantly well due to their compatibility, operationality, and energy density. The battery management system is more compatible with li-ion battery. The stable voltage and capacity properties of lithium-ion batteries make them well-suited for BMS control. Alongside the safety concerns, precision charging and discharging measures help the BMS prevent overcharging conditions. This provides a healthy atmosphere for the BMS to optimize the battery performance. The cell structure of lithium-ion batteries provides easy access to BMS for balancing and redistributing energy between them. The accuracy of SoC estimation is essential for optimizing battery performance and the battery's longevity. Due to lithium-ion batteries' relatively stable voltage profiles during discharge, BMS systems can accurately estimate SoC based on voltage readings. The automotive BMS vendors try to expand the battery controlling capacity and their monitoring power.
In October 2023, Infineon and Neutron Controls teamed up to deliver advanced automotive BMS platform. The new ECU8 platform can monitor up to 12 lithium-ion battery cells individually. The system can support up to 1,000 V batteries with a combination of 20 modules.
Asia-Pacific holds a significant share in the global automotive battery management system market. With the emerging economies like China and India, the region is expected to grow rapidly during the forecast period. The increasing pollution levels, governments promoting EVs for green transportation, and growing innovation around EV manufacturing is expected to fuel the adoption of automotive BMS during the forecast period. Asia-Pacific is home to several prominent firms and research institutes that specialize in battery technology and battery management system (BMS) development. These organizations are constantly innovating and refining their BMS technologies, which has contributed to the region's position as a leading market.
In January 2023, Beam Global declared the issuance of a new patent in India, which is related to the company's battery safety technology and was granted by CNIPA and CGPDTM. The new battery management system is equipped with a thermal storage capacity that allows for automatic adjustment of power output for the battery pack and cells.
Lockdowns led to decrease in demand of automotive manufacturers, especially, those manufacturing electric vehicles, leading to temporary cease or reduce production. It had a negative impact on the demand for electric vehicle batteries in the short-term, as well as the automotive battery management system market. The extended research and development programs were at halt during the peak of the pandemic, slowing down the launch of upgraded BMS solutions. As part of their economic recovery plans, many governments have offered incentives and support to encourage EV adoption, which has helped to offset the decrease in demand and stimulate EV sales.
The Russia-Ukraine war had an adverse impact on automotive sector. It disrupted the flow of raw materials essential for the manufacturing and production flow. The war led to halts in research and development programs, impacting the system development. Furthermore, the political instability and violence diverted the consumer behavior and slowed down the demand for EVs around the area affected by conflict. Furthermore, regions covering Eastern Europe have impacted due to the implications of war. The conflict raised questions about the security of energy supply and the dependence on external sources of energy and raw materials. It caused governments and industries to focus on domestic energy sources, potentially affecting the uptake of electric vehicles and automotive BMS market in general.
Global automotive battery management system market is highly competitive with a blend of established and new entrants. The sector is undergoing a rapid transformation due to the increasing penetration of EVs and hybrids. Factors that shape the competitive environment include technological progress, alliances, mergers, and regional dynamics. The companies are trying to integrate their platform with latest technologies like wireless technology, artificial intelligence, machine learning, and IoT.
In November 2022, NXP Semiconductors developed a cloud-connected BMS for EVs, compatible for its high-voltage battery management system (HVBMS) through its S32G glodbox vehicle networking. AI-driven cloud-based electric vehicle (EV) twin model is designed to enhance EV battery range, performance, safety, and longevity, as well as ushering in multiple new applications.
In September 2022, Sensata Technologies, Inc. unveiled the Lithium Balance n3-BMS, a novel Battery Management System designed for high-voltage applications.
In July 2022, Marelli developed its new state-of-the-art wireless battery management systems for electric vehicles. The system reduced wiring harness by 90%, enabling the battery with more efficiency, reliability, and flexibility. The development is likely to reduce the EV cost around the globe.
In April 2022, Infineon Technologies AG launched a new series of battery management Integrated Circuits (ICs), featuring the TLE9012DQU and TLE9015DQU models. Specifically engineered for battery cell monitoring and balancing, these ICs boast outstanding measurement performance and unparalleled application robustness.
All segments will be provided for all regions and countries covered:
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.