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Thermal Management Optimization of a Passive BMS for Automotive Applications

机译:汽车应用无源BMS的热管理优化

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This paper deals with a new adaptive balancing control algorithm for passive and distributed Battery Management System (BMS) for automotive applications. A calibrated first-order model for the battery cells and thermal model of the BMS slaves unit have been considered in the development of the proposed control. It performs the balancing process of the cells by managing the temperature of the BMS slave unit. Taking into account the thermal constraints of the system, the proposed control dynamically selects the number of the cells to be balanced for each battery module and the optimal temperature of the BMS slave units in order to minimize the equalization time. A deep numerical analysis is presented to validate the performance of the proposed approach.
机译:本文针对汽车应用中的无源和分布式电池管理系统(BMS),提出了一种新的自适应平衡控制算法。在建议的控件的开发中,已经考虑了电池单元的校准一阶模型和BMS从属单元的热模型。它通过管理BMS从属单元的温度来执行电池的平衡过程。考虑到系统的热约束,建议的控件会动态选择每个电池模块要平衡的电池单元数量和BMS从属单元的最佳温度,以使均衡时间最短。进行了深入的数值分析,以验证所提出方法的性能。

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