供电电压不平衡和畸变条件下三相PWM升压整流器输出电压和输入电流性能分析及实验验证

Xinhui Wu, S. K. Panda, Jian-xin Xu
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引用次数: 10

摘要

本文分析了三相PWM升压整流器在电源电压不平衡和畸变情况下的直流输出电压和线侧电流。基于三相PWM升压整流器在正、负同步旋转框架中的数学模型,推导并给出了直流环节电压的详细解析表达式。它显示了直流输出电压中由电源电压负序分量引起的偶次谐波分量的存在。本文从分析的角度研究了电源电压畸变对线路侧电流的影响,并进行了讨论。设计了一种在正、负同步旋转参考系下的简单级联PI电流控制方案,以保证在不平衡、畸变的供电电压工况下,直流链路电压保持恒定,供电侧功率因数接近统一。给出了该控制器在1.6 kVA实验室PWM整流器上的实验测试结果。测试结果表明,与传统的基于单参考帧的控制器相比,所提出的控制方案的性能得到了提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Experimental Validation of the Output Voltage and Input Current Performances in Three Phase PWM Boost Rectifiers Under Unbalanced and Distorted Supply Voltage Conditions
This paper analyzes the dc output voltage and line side currents of the three phase PWM boost rectifier under unbalanced and distorted supply voltage conditions. Based on the mathematical model of the three-phase PWM boost rectifier in the positive and negative synchronous rotating frames, a detailed analytical expression for the dc link voltage has been derived and presented. It shows the presence of even order harmonic components in the dc output voltage caused by the negative sequence component of the supply voltages. The effect of the distorted supply voltage on the line side currents has been investigated from the analytical point of view and discussed in this paper. A simple cascaded PI current control scheme in the positive and negative synchronous rotating reference frames has been designed to ensure that the dc link voltage is maintained constant and the supply side power factor is kept close to unity under the unbalanced and distorted supply voltage operating conditions. Experimental test results with the proposed controller are provided on a 1.6 kVA laboratory based PWM rectifier. Test results obtained confirm that the performance of the proposed control scheme enhances the performance of the PWM rectifier over the conventional single reference frame based controller.
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