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Evaluation of Control and Modulation Methods for Modular Multilevel Converters

机译:模块化多级转换器的控制和调制方法评估

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The modular multilevel converter is a promising converter technology for various high-voltage high-power applications. Despite the apparent simplicity of the circuit, the inherent dynamics of the converter and the balancing of the sub-module capacitor voltages impose high requirements on the control system, which can be implemented in quite different ways. To illustrate this, and to provide a guidance for future research on the subject, this paper presents an evaluation of four different control and modulation methods. The investigation is based on experiments on a down-scaled 10 kVA converter having 10 sub-modules per phase leg. The main items to be investigated are dynamics within the submodules, arm voltages and circulating currents. It is found that the suggested open-loop control method provides the fastest arm-voltage response and that the balancing approach based on a sorting algorithm is substantially faster and less complicated to implement than the method using a dedicated voltage controller for each sub-module.
机译:模块化多级转换器是各种高压大功率应用的有前途的转换器技术。尽管电路的明显简单,但是转换器的固有动态和子模块电容电压的平衡对控制系统产生了高要求,这可以以完全不同的方式实现。为了说明这一点,并为未来对该主题的研究提供指导,本文提出了四种不同控制和调制方法的评估。该研究基于每相腿具有10个子模块的下缩放10 kVA转换器的实验。要调查的主要项目是子模块内的动态,臂电压和循环电流。发现建议的开环控制方法提供最快的臂电压响应,并且基于排序算法的平衡方法基本上比使用每个子模块的专用电压控制器的方法更快,更复杂。

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