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Reduced switching-frequency voltage-balancing strategies for modular multilevel HVDC converters

机译:模块化多电平HVDC转换器的降低开关频率电压平衡策略

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The modular multilevel converter (MMC) is a potential candidate for medium/high-power applications, specifically for high-voltage direct current (HVDC) transmission systems. One of the technical challenges associated with the control of an MMC is to carry out the submodule (SM) capacitor voltages balancing task without imposing any unnecessary switching transition among the SMs. This paper develops a general framework for the capacitor voltage balancing of an MMC. Based on the developed framework and with the objective of reducing the unnecessary switching transitions among the SMs, three capacitor voltage-balancing strategies are proposed and investigated: 1) a slow-rate balancing strategy based on the conventional sorting method; 2) a hybrid balancing strategy which combines a predictive method with the conventional sorting method; and 3) a fundamental-frequency balancing strategy. Performance of the proposed strategies for a point-to-point 21-level MMC-based HVDC system is evaluated based on time-domain simulation studies in the PSCAD/EMTDC software environment. The reported study results demonstrate the capability and tradeoffs of the proposed strategies to reduce the number of switching transitions and, consequently, the MMC losses, under various conditions.
机译:模块化多电平转换器(MMC)是中/大功率应用的潜在候选者,特别是高压直流(HVDC)传输系统。与MMC的控制相关的技术挑战之一是执行子模块(SM)电容器电压平衡任务,而不会在SM之间施加任何不必要的切换过渡。本文为MMC的电容器电压平衡建立了通用框架。基于已开发的框架,并以减少SM之间不必要的开关转换为目标,提出并研究了三种电容器电压平衡策略:1)基于常规排序方法的慢速平衡策略; 2)混合平衡策略,将预测方法与常规分类方法相结合; 3)基本频率平衡策略。基于PSCAD / EMTDC软件环境中的时域仿真研究,评估了基于点对点21级基于MMC的HVDC系统的拟议策略的性能。所报告的研究结果表明,在各种条件下,所提议策略在减少切换转换次数以及减少MMC损失方面的能力和取舍。

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