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Modular battery energy storage system based on one integrated primary multi-secondaries transformer and its independent control strategy

机译:基于一个集成的初级多级二次变压器的模块化电池储能系统及其独立控制策略

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In order to solve the inconsistency of the battery pack in the traditional battery energy storage system, a new type of battery module energy storage system topology and control strategy based on flexible grouping is proposed--Modular Battery Energy Storage System Based on One integrated Primary multi-secondaries transformer. Different from commonly used full-power control mode, the part-power control mode is adopted in this paper. The current flowing through the switches is the difference of each battery module current and the average current of all battery modules. By applying part-power control method, the system volume, cost and loss will be effectively reduced. Based on the dual active bridge converter and one integrated primary multi-secondaries transformer, phase shifting control strategy is implemented to control part of the charging and discharging current of each battery module independently, which makes each battery module work under the best condition and helps in improving the energy utilization. Based on analyses of the data of the passenger car battery after 3 years of actual operation, Simulation results show the correctness and superiority of this topology and its control method.
机译:为了解决传统电池储能系统中电池组的不一致性,提出了一种基于灵活分组的新型电池模块储能系统拓扑结构和控制策略-基于一个集成的一次主乘的模块化电池储能系统。 -次级变压器。与常用的全功率控制模式不同,本文采用部分功率控制模式。流过开关的电流是每个电池模块电流与所有电池模块平均电流之差。通过采用部分功率控制方法,可以有效减少系统体积,成本和损耗。基于双有源桥式转换器和一个集成的初级多次级变压器,实现了相移控制策略,以独立地控制每个电池模块的部分充电和放电电流,从而使每个电池模块在最佳条件下工作,并有助于提高能源利用率。通过对乘用车电池实际运行3年后的数据进行分析,仿真结果表明了该拓扑及其控制方法的正确性和优越性。

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