基于插入式频域重复控制器的三相PWM升压整流器在电源电压畸变和不平衡下的双帧控制方案

Xinhui Wu, S. K. Panda, Jian-xin Xu
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引用次数: 2

摘要

本文提出了一种基于数字插入式频域重复控制器(FDRC)的双帧控制方案,用于在电源电压畸变和不平衡的情况下最小化输出直流链路电压的偶次谐波和线路电流的奇次谐波。所提出的电流控制器由传统PI控制器和基于频域的插入式重复控制器组成。基于广义电源电压条件下三相PWM升压整流器的数学模型,将控制任务分为:(a)直流电压谐波控制和(b)线侧电流谐波控制。参考电流的计算算法是基于电压谐波控制,以确保直流链路电压保持恒定,电源侧功率因数保持接近一致。插入式重复控制器设计用于实现三相PWM升压整流器的低THD线侧电流。基于实验室的1.6 kVA PWM整流器的实验测试结果证实,直流链路电压纹波可以从单框控制器的2.5%降低到双旋转框控制器的1.0%。此外,随着所提出的插入式FDRC控制器的插入,直流链路上的纹波减少到0.5%。采用该控制方案后,线路侧电流的THD由29.03%提高到5.93%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual frame control scheme with a plug-in frequency domain based repetitive controller for three phase PWM boost rectifier under distorted and unbalanced supply voltages
This paper presents a dual frame control scheme with a digital plug-in frequency domain based repetitive controller (FDRC) for minimizing the even order harmonics at the output dc link voltage and odd order harmonics in the line currents under the distorted and unbalanced supply voltage conditions. The proposed current controller consists of a conventional PI controller and a frequency domain based plug-in repetitive controller. Based on the mathematical model of the three-phase PWM boost rectifier under the generalized supply voltage conditions, the control task is divided into: (a) dc-link voltage harmonics control and (b) line side current harmonics control. The algorithm of the reference current calculation is based on voltage harmonics control to make sure that the dc link voltage is maintained constant and the supply side power factor is kept close to unity. The plug-in repetitive controller is designed to achieve line side currents with low THD for the three phase PWM boost rectifier. The experimental test results obtained from a 1.6 kVA laboratory based PWM rectifier confirm that the ripple at the dc link voltage can be reduced from 2.5% with the single frame controller to 1.0% with a dual rotating frame controller. Further, with the insertion of the proposed plug-in FDRC controller, the ripple at the dc link is reduced to 0.5%. Also, the THD of the line side current is improved from 29.03% to 5.93% by using the proposed control scheme.
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