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A Comprehensive Review of Capacitor Voltage Balancing Strategies for Multilevel Converters Under Selective Harmonic Elimination PWM

机译:选择性谐波消除PWM下多级转换器电容电压平衡策略的全面综述

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摘要

In recent decades, applications of selective harmonic elimination pulsewidth modulation (SHE-PWM) have been extended from two-level to multilevel converters (MLCs). For most MLC topologies, one of the main challenges of using SHE-PWM lies on capacitor voltage balancing, especially with very low switching frequency in high-power applications. Due to the broad variety of MLCs, it is of great difficulty to develop a generalized capacitor voltage balancing method under SHE-PWM that is suitable for all topologies. In order to further facilitate the industrial applications of SHE-PWM on MLCs, this article provides a comprehensive review of the state-of-the-art capacitor voltage balancing strategies for MLCs under SHE-PWM. The voltage balancing methods in this article include self-balancing control, charge amount regulation, zero-sequence harmonic adjustment, redundant switching angle sets adjustment, angle modification, selective harmonic elimination model predictive control, space voltage vectors adjustment, and redundant states adjustment. Detailed comparisons of the eight voltage balancing strategies under SHE-PWM are presented to facilitate the selections of the most suitable method for specific applications. Moreover, discussions on open questions and future trends of this topic are also presented, to motivate future research and explore new alternatives.
机译:近几十年来,选择性谐波消除脉冲宽度调制(SHE-PWM)的应用已从两级扩展到多级转换器(MLC)。对于大多数MLC拓扑,使用She-PWM的主要挑战之一是电容器电压平衡,特别是在大功率应用中具有非常低的开关频率。由于多种MLC,在适用于所有拓扑的SHE-PWM下,难以开发广义电容器电压平衡方法很困难。为了进一步促进She-PWM对MLC的工业应用,本文对She-PWM下的MLCS的最先进电容电压平衡策略进行了全面审查。本文中的电压平衡方法包括自平衡控制,电荷量调节,零序谐波调节,冗余开关角度调节,角度修改,选择性谐波消除模型预测控制,空间电压矢量调整和冗余状态调整。提出了She-PWM下的八个电压平衡策略的详细比较,以促进特定应用最合适的方法。此外,还提出了关于开放问题和未来趋势的讨论,以激励未来的研究和探索新的替代方案。

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