Experimental Investigation of Modified Level Shift PWM with Capacitor Voltage Balancing on Single Phase Modular Multilevel Converter

Balamurugan S, Bhavani M, Sudha R, Padmanaban K
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Abstract

Modular Multilevel Converters (MMCs) are a prominent voltage source converter topology that is rapidly gaining popularity in medium/high power/voltage applications, including high-voltage DC transmission systems and electric vehicle systems. However, MMC has the critical issue of unbalanced submodule capacitor voltages and circulating current. The MMC distributes DC-link energy evenly among its submodule capacitors, rather than storing it in a large capacitor like conventional voltage source converters. In MMC, the submodule floating capacitors interface the DC input voltage and AC output voltage. Therefore, capacitor voltages must be balanced. The existing capacitor voltage control struggles to handle many gate pulses at medium and high voltages. An effective control scheme is needed to solve the issues mentioned earlier. This paper presents a performance analysis of a 1-Φ MMC using a modified level shift PWM technique based on Universal Control Modulation Scheme (UCMS) and a sorting-based capacitor voltage balancing algorithm. MATLAB/Simulink software implements the proposed control method for a 1-Φ , seven-level MMC. The outcomes of the simulation demonstration reveal that phase disposition PWM offers less harmonic distortion of output phase voltage than the other level shift PWM techniques, such as phase disposition PWM and alternate phase disposition PWM. The simulation results also demonstrate the effective use of the sorting-based capacitor balancing algorithm to regulate the voltages of the submodule capacitors. Finally, the real-time GUI tool validates the simulation results using an experimental prototype of 1-Φ MMC with the dSPACE MicroLabBox 1202.
单相模块化多电平转换器上带电容器电压平衡的修正电平移动 PWM 的实验研究
模块化多电平转换器(MMC)是一种突出的电压源转换器拓扑结构,在中/高功率/电压应用领域(包括高压直流输电系统和电动汽车系统)迅速普及。然而,MMC 存在子模块电容器电压和环流不平衡的关键问题。MMC 将直流链路能量均匀地分配给子模块电容器,而不是像传统电压源转换器那样将能量存储在一个大电容器中。在 MMC 中,子模块浮动电容器连接直流输入电压和交流输出电压。因此,电容器电压必须平衡。现有的电容器电压控制难以处理中高压下的许多栅极脉冲。需要一种有效的控制方案来解决上述问题。本文采用基于通用控制调制方案(UCMS)的改进电平移动 PWM 技术和基于排序的电容器电压平衡算法,对 1-Φ MMC 进行了性能分析。MATLAB/Simulink 软件实现了针对 1-Φ 七电平 MMC 的拟议控制方法。仿真演示结果表明,相位分配 PWM 与其他电平移动 PWM 技术(如相位分配 PWM 和交替相位分配 PWM)相比,输出相电压的谐波失真更小。仿真结果还表明,基于排序的电容器平衡算法可有效调节子模块电容器的电压。最后,实时图形用户界面工具通过使用 dSPACE MicroLabBox 1202 的 1-Φ MMC 实验原型验证了仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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