电池二次寿命:利用电动汽车的可持续发展潜力和可再生能源电网整合

B. Gohla-Neudecker, M. Bowler, S. Mohr
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引用次数: 53

摘要

电池二次寿命存储系统是汽车和发电部门之间协同作用的结果。它们同时利用了电动汽车(ev)和可再生能源电网整合的可持续性潜力。汽车制造商在电池系统制造和电动汽车长期运营方面的丰富经验,为他们在智能电网应用中的固定存储市场复制成功提供了坚实的基础。本文为评估可操作的电池二次寿命系统提供了系统和分析基础,并推导出有效的控制策略,以最小的电池老化达到最大的系统性能。建议的优化措施基于对欧洲首个电池二次寿命系统记录数据的详细分析,重点关注soc、c率和电池温度。
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Battery 2nd life: Leveraging the sustainability potential of EVs and renewable energy grid integration
Battery 2nd life storage systems are a result of the synergies between the automotive and power generation sectors. They leverage the sustainability potential of electric vehicles (EVs) and renewable energy grid integration simultaneously. The vast experience of automobile manufacturers in battery system manufacturing and long-term operation in EVs provide a strong basis for replicating their success in the stationary storage market within smart grid applications. This paper provides the methodical and analytical basis for assessing an operational battery 2nd life system and deducting an effective control strategy for attaining maximum system performance with minimum battery cell aging. Suggested optimisation measures are based on a detailed analysis of logged data from Europe's first battery 2nd life system, focussing on SoCs, c-rates and cell temperatures.
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