基于载波的三电平二极管箝位逆变器共模电压控制技术

P. Chaturvedi, Shailendra Jain, P. Agarwal
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引用次数: 12

摘要

开关变换器在电力驱动应用中用于产生可变电压,产生有害的大dv/dt和高频共模电压(CMV)的变频电源。与传统的双电平逆变器相比,多电平逆变器产生更低的CMV。本文提出了一种简单的基于载波的技术,通过在实际参考电压信号中加入共模电压偏置信号,利用相位配置(PD)、相对配置(POD)等不同结构的正弦三角比较方法来控制多电平逆变器的共模电压。本文还提出了优化失调信号幅值的方法,以降低逆变器输出电压的CMV和总谐波失真。所提出的技术在换相次数、幅值、CMV变化率和逆变器输出电压谐波分布方面与基于复空间矢量的控制策略具有相当的性能。仿真和实验结果验证了该方法对共模电压控制的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Carrier-Based Common Mode Voltage Control Techniques in Three-Level Diode-Clamped Inverter
Switching converters are used in electric drive applications to produce variable voltage, variable frequency supply which generates harmful large dv/dt and high-frequency common mode voltages (CMV). Multilevel inverters generate lower CMV as compared to conventional two-level inverters. This paper presents simple carrier-based technique to control the common mode voltages in multilevel inverters using different structures of sine-triangle comparison method such as phase disposition (PD), phase opposition disposition (POD) by adding common mode voltage offset signal to actual reference voltage signal. This paper also presented the method to optimize the magnitude of this offset signal to reduce CMV and total harmonic distortion in inverter output voltage. The presented techniques give comparable performance as obtained in complex space vector-based control strategy, in terms of number of commutations, magnitude, and rate of change of CMV and harmonic profile of inverter output voltage. Simulation and experimental results presented confirm the effectiveness of the proposed techniques to control the common mode voltages.
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