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State-of-charge balancing control strategy of battery energy storage system based on modular multilevel converter

机译:基于模块化多电平转换器的电池储能系统荷状态平衡控制策略

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This paper proposed a novel battery energy storage system based on modular multilevel converter (MMC), which has several merits compared with two-level and cascaded multilevel battery energy storage systems. The proposed system can manage the state-of-charges (SOCs) of all batteries to be equal to avoid the overcharge or over discharge of single battery stack as traditional. Besides, the inherent power exchange characteristics using circulating current could increase the control flexibility for SOC balancing, and improve output waveform quality, maximize storage capacity and reduce internal losses. The key issues regarding injected dc current control, SOC balancing control and circulating current control are discussed in this paper. Finally, the proposed system were verified through Matlab/Simulink simulation and a scaled down experiment prototype.
机译:提出了一种基于模块化多电平转换器(MMC)的新型电池储能系统,该系统与两级和级联的多级电池储能系统相比具有许多优点。所提出的系统可以将所有电池的充电状态(SOC)设置为相等,以避免传统电池单体电池组的过充电或过放电。此外,利用循环电流的固有功率交换特性可以提高SOC平衡的控制灵活性,并改善输出波形质量,最大化存储容​​量并减少内部损耗。本文讨论了有关注入直流电流控制,SOC平衡控制和循环电流控制的关键问题。最后,通过Matlab / Simulink仿真和按比例缩小的实验原型对所提出的系统进行了验证。

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