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Improved capacitor voltage balancing control for multimode operation of modular multilevel converter with integrated battery energy storage system

机译:改进的电容器电压平衡控制,用于带有集成电池储能系统的模块化多电平转换器的多模式运行

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摘要

Modular multilevel converter with integrated battery energy storage system (MMC-BESS) has been proposed for energy storage requirements in high-voltage applications with large-scale renewable energy resources. The MMC-BESS is essentially a three-port converter which can transfer energy between any two of the ac port, dc port, and BESS, constituting multimode operation of the system. Different from conventional MMCs, the state-of-charge (SOC) inconsistency among batteries would magnify the submodule capacitor voltage unbalance issue in the MMC-BESS. In this study, an improved capacitor voltage balancing method applicable for multimode operation of MMC-BESS is proposed by adjusting ac and dc modulation indexes simultaneously. After that, the ratio of ac and dc modulation indexes is optimised to enhance the tolerance of unbalanced power among SMs within phase arm, greatly improving the SOC equalisation rate. Based on the proposed capacitor voltage balancing method, the control structure is given and the dynamic model is conducted for the analytic design of the closed-loop controller. Finally, the simulations and experimental results validate the effectiveness and feasibility of the proposed control strategy.
机译:提出了带有集成电池储能系统(MMC-BESS)的模块化多电平转换器,以满足具有大规模可再生能源的高压应用中的储能需求。 MMC-BESS本质上是一个三端口转换器,可以在ac端口,dc端口和BESS中的任何两个之间传输能量,从而构成系统的多模式操作。与常规MMC不同,电池之间的充电状态(SOC)不一致会放大MMC-BESS中子模块电容器电压不平衡的问题。在这项研究中,通过同时调整交流和直流调制指标,提出了一种适用于MMC-BESS多模工作的改进的电容器电压平衡方法。此后,优化交流和直流调制指标的比率,以增强相臂内SM之间不平衡功率的容忍度,从而大大提高了SOC均衡率。基于所提出的电容器电压平衡方法,给出了控制结构并建立了动力学模型,用于闭环控制器的解析设计。最后,仿真和实验结果验证了所提出控制策略的有效性和可行性。

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