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A Control Method of HVDC-Modular Multilevel Converter Based on Arm Current Under the Unbalanced Voltage Condition

机译:不平衡电压条件下基于臂电流的HVDC-模块化多电平变换器控制方法

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摘要

This paper proposes an enhanced control method for a high-voltage direct-current (HVDC) modular multilevel converter (MMC). To control an MMC-HVDC system properly, the ac current, circulating current, and submodule (SM) capacitor voltage are considered. The ac-side current is a fundamental frequency component, and the circulating current is a double-line frequency component. Existing control methods control the ac current and circulating current by separating each component. However, the existing methods have a disadvantage in that the ac-side current must be separated into the positive and negative sequences for control under an unbalanced voltage condition. The circulating current consists of not only negative-sequence components but also positive- and zero-sequence components under an unbalanced voltage condition. Therefore, an additional control method is necessary to consider the positive- and zero-sequence components of the circulating current. The proposed control method has the advantage of controlling not only the ac-side current of the MMC but also the circulating current without separating each of the current components to control each arm current of the MMC. In addition, it can stably control the positive- and zero-sequence components of the circulating current under the unbalanced voltage condition.
机译:本文提出了一种改进的高压直流(HVDC)模块化多电平转换器(MMC)的控制方法。为了正确控制MMC-HVDC系统,需要考虑交流电流,循环电流和子模块(SM)电容器电压。交流侧电流是基频分量,循环电流是双线频率分量。现有的控制方法通过分离每个分量来控制交流电流和循环电流。但是,现有方法的缺点在于,必须将交流侧电流分成正序和负序,以便在不平衡电压条件下进行控制。在不平衡电压条件下,循环电流不仅由负序分量组成,还由正序和零序分量组成。因此,需要一种附加的控制方法来考虑循环电流的正序和零序分量。提出的控制方法的优点在于,不仅控制MMC的交流侧电流,而且还控制循环电流,而无需分离每个电流分量来控制MMC的每个臂电流。另外,它可以在不平衡电压条件下稳定地控制循环电流的正序和零序分量。

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