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OPTIMAL MAINTENANCE OF ELECTRIC VEHICLE BATTERY SYSTEM THROUGH OVERNIGHT HOME CHARGING

机译:通过夜间家用充电对电动汽车电池系统进行最佳维护

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Plug-in electric vehicle (PEV) is emerging as one of the most viable choices for the transportation sector to reduce fossil fuel consumption and CO_2 emission. As the most critical component of PEV, battery systems require intensive management and diagnostics to ensure safety, efficiency, and endurance. Most existing studies focus on battery management when PEVs are under operation while none has explored battery maintenance during overnight parking, which accounts for a majority of the time (>12 hours per day). Battery states during this period significantly affect the lifetime due to the side reactions that occur even when the battery is not in use. The process occurs at an accelerated rate when the battery energy level or temperature is too high or too low. In this paper, we propose to utilize an existing infrastructure available to PEV owners, the home charging unit, for intelligent battery maintenance during overnight parking. We will design an optimal charging profile that would charge the battery to a specific level while maintaining its states at optimal conditions to minimize degradation due to side reactions over the whole overnight period. Optimal charging profiles are created for different ambient temperatures and at different stages of battery life to investigate various scenarios. To demonstrate the effectiveness of the designed optimal charging profiles, the total capacity loss overnight is compared with those of three standard charging profiles.
机译:插入式电动汽车(PEV)逐渐成为交通运输领域减少化石燃料消耗和CO_2排放的最可行选择之一。电池系统作为PEV的最关键组件,需要进行密集的管理和诊断,以确保安全性,效率和耐用性。现有的大多数研究都集中在PEV运转时的电池管理,而没有一个研究过过夜停车期间的电池维护,这占了大部分时间(每天12小时以上)。在此期间,由于即使不使用电池,也会发生副反应,因此电池状态会严重影响使用寿命。当电池能量水平或温度太高或太低时,该过程都会以加速的速度发生。在本文中,我们建议利用PEV拥有者可利用的现有基础设施(家庭充电装置)在夜间停车期间进行智能电池维护。我们将设计一个最佳充电曲线,该充电曲线将电池充电到特定水平,同时将其状态保持在最佳条件下,以最大程度地减少由于整夜的副反应而导致的退化。针对不同的环境温度和电池寿命的不同阶段创建了最佳的充电曲线,以研究各种情况。为了证明设计的最佳充电曲线的有效性,将过夜的总容量损失与三种标准充电曲线的总损耗进行了比较。

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