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A modified circulating current suppressing strategy for nearest level control based modular multilevel converter

机译:基于最近电平控制的模块化多电平转换器的改进循环电流抑制策略

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The second-harmonic circulating current in the phase legs of modular multilevel converter (MMC) leads to additional power losses. Existing circulating current suppressing strategies are realized by injecting the second-harmonic component in arm voltage reference. This paper presents a modified circulating current suppressing strategy including two controllers with a fixed-band submodule (SM) state transition principle. The proposed strategy is different from traditional methods, and especially suitable for MMC with nearest level control (NLC). Operating as hysteresis control, the peak values of circulating current can be approximately limited within the fixed-band. A detailed analysis in this paper for traditional circulating current suppressing controllers (TCCSC) and the proposed controller1 demonstrates that the peak-to-peak (p-p) value of the controlled circulating current for the former is greater than the latter, mainly due to the operation characteristic of MMC in the case of NLC. Moreover, the proposed controllers are simpler to be implemented with very fast dynamic performance. Simulation results proved effectiveness of the proposed control strategy.
机译:模块化多电平转换器(MMC)的相脚中的二次谐波循环电流会导致额外的功率损耗。现有的循环电流抑制策略是通过在臂电压基准中注入二次谐波分量来实现的。本文提出了一种改进的循环电流抑制策略,该策略包括两个具有固定带子模块(SM)状态转换原理的控制器。所提出的策略与传统方法不同,并且特别适合于具有最近电平控制(NLC)的MMC。作为磁滞控制,循环电流的峰值可以大致限制在固定范围内。本文针对传统的循环电流抑制控制器(TCCSC)和建议的控制器1进行的详细分析表明,前者的受控循环电流的峰峰值(pp)值大于后者,这主要是由于运行NLC情况下MMC的特性。此外,所提出的控制器更易于实现,并且具有非常快的动态性能。仿真结果证明了所提出控制策略的有效性。

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