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Arm Current Balancing Control for Modular Multilevel Converters Under Unbalanced Grid Conditions

机译:电网不平衡条件下模块化多电平变换器的臂电流平衡控制

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Symmetrical ac-side current control is widely used for grid-connected modular multilevel converters (MMCs) under grid fault conditions. However, it is revealed that this control method can lead to unbalanced arm currents and consequently asymmetrical electrical stresses and nonuniform temperature distributions. This paper aims to analyze the mechanism of the unbalanced arm currents and propose an effective method to solve this problem. First, the electrical quantities inside MMCs are analyzed under unbalanced grid fault conditions. The analytical expressions of the unbalanced arm currents are derived considering different fault severities and operating conditions to reveal the "side-effects" of the symmetrical ac-side current control. After that, a zero-sequence ac voltage injection method is proposed. The injected voltage is directly derived from negative-sequence ac current controller and ac-side current with pure mathematical manipulations, which can be easily obtained without extra controllers. The effect of the injected voltage on the original modulation index is very limited according to an accurate quantitative analyzation. Moreover, the proposed method does not affect the already achieved symmetrical ac-side current control and the circulating current suppression. The effectiveness and performance of the proposed analysis and control method are verified by both simulation and experimental results.
机译:对称交流侧电流控制已广泛用于电网故障条件下的并网模块化多电平转换器(MMC)。然而,据揭示,这种控制方法会导致不平衡的臂电流,从而导致不对称的电应力和不均匀的温度分布。本文旨在分析不平衡臂电流的机理,并提出解决该问题的有效方法。首先,在不平衡电网故障条件下分析MMC内部的电量。考虑到不同的故障严重程度和工作条件,得出不平衡臂电流的解析表达式,以揭示对称的交流侧电流控制的“副作用”。此后,提出了一种零序交流电压注入方法。注入的电压直接通过纯数学运算从负序交流电流控制器和交流侧电流获得,无需额外的控制器即可轻松获得。根据精确的定量分析,注入电压对原始调制指数的影响非常有限。此外,所提出的方法不影响已经实现的对称的交流侧电流控制和循环电流抑制。仿真和实验结果都验证了所提出的分析和控制方法的有效性和性能。

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