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Analysis and Fault Control of Hybrid Modular Multilevel Converter With Integrated Battery Energy Storage System

机译:集成电池储能系统的混合模块化多电平变换器的分析与故障控制

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摘要

A modular multilevel converter (MMC) integrated with split battery modules has been verified a better choice for the large-scale battery energy storage system (BESS). In this case, both ac grid and dc grid can exchange power with the BESS while the power transfer between ac and dc grids can be decoupled. However, without the ability to ride through dc grid fault, the performance and reliability of whole system will be reduced. Therefore, a hybrid MMC (HMMC) with integrated BESS (HMMC-BESS) is proposed in this paper. Then the batteries can exchange power with the normal grid continuously and independently, even when short-circuit fault condition happens on ac or dc grid. However, the traditional control schemes are no longer suitable for the fault modes. In this paper, the configuration, modeling, and operation modes of HMMC-BESS are discussed first. After that, both ac and dc grid fault modes of HMMC are analyzed and control schemes of corresponding mode are presented. In addition, novel balancing methods for the state-of-charge and voltage allocation scheme are proposed according to different operation modes. Finally, a downscaled prototype is built in laboratory to verify the proposed control scheme.
机译:经过验证,与分离式电池模块集成的模块化多电平转换器(MMC)是大型电池储能系统(BESS)的更好选择。在这种情况下,交流电网和直流电网都可以与BESS交换功率,而交流和直流电网之间的功率传输可以解耦。但是,如果无法克服直流电网故障,则会降低整个系统的性能和可靠性。因此,本文提出了一种具有集成BESS的混合MMC(HMMC)(HMMC-BESS)。这样,即使交流或直流电网发生短路故障,电池也可以连续且独立地与正常电网交换电力。然而,传统的控制方案不再适用于故障模式。本文首先讨论了HMMC-BESS的配置,建模和操作模式。然后,分析了HMMC的交流和直流电网故障模式,并提出了相应模式的控制方案。此外,针对不同的工作模式,提出了一种新的充电状态和电压分配方案的平衡方法。最后,在实验室中建立了缩小规模的原型,以验证所提出的控制方案。

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