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A Preventive Approach for Solving Battery Imbalance Issue by Using a Bidirectional Multiple-Input Ćuk Converter Working in DCVM

机译:通过在DCVM中工作的双向多输入Fuk转换器解决电池不平衡问题的预防方法

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摘要

State of charge (SoC) imbalance among batteries in a battery energy storage system (BESS) degrades the system performance and may lead to safety issue. A bidirectional multiple-input Ćuk converter for the BESS is proposed to prevent batteries from SoC imbalance issue. Compared to the traditional BESS, the battery balancing and voltage/current regulation subsystems are combined into one. As a result, the overall system complexity is significantly reduced. Moreover, the current flow of each battery is self-adjusted according to its terminal voltage. Therefore, the system does not require sophisticated control algorithm for battery balancing. Moreover, the proposed system has no energy dumping and energy transferring between batteries, which avoids unnecessary energy lose. Due to the nature of multiple-input converter structure, the proposed system can handle certain component failure. The proposed approach of designing the BESS has been investigated through simulation and validated experimentally.
机译:电池储能系统(BESS)中电池之间的荷电状态(SoC)不平衡会降低系统性能,并可能导致安全问题。提出了一种用于BESS的双向多输入Cuk转换器,以防止电池发生SoC不平衡问题。与传统的BESS相比,电池平衡和电压/电流调节子系统合为一体。结果,整个系统的复杂性大大降低了。此外,每个电池的电流会根据其端电压进行自我调节。因此,该系统不需要复杂的控制算法来实现电池平衡。此外,所提出的系统没有能量在电池之间的转移和能量转移,从而避免了不必要的能量损失。由于多输入转换器结构的性质,所提出的系统可以处理某些组件故障。通过仿真研究了提出的设计BESS的方法,并进行了实验验证。

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