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Supply-side Current Harmonics Control of Three Phase PWM Boost Rectifiers Under Distorted and Unbalanced Supply Voltage Conditions

机译:三相PWM升压整流器的供应侧电流谐波控制扭曲和不平衡电源电压条件下

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This paper presents a hybrid current control scheme to minimize the even order harmonics at the dc link voltage and odd order harmonics in the line currents under the distorted and unbalanced supply voltage conditions. The hybrid current control scheme consists of a conventional PI and a repetitive controller (RC). Based on the mathematical model of the three-phase PWM boost rectifier in the positive and negative synchronous rotating frames, the influence of the distorted supply voltages on the line side currents has been investigated from the analytical point of view. The control task is divided into: (a) dc-link voltage harmonics control and (b) line side current harmonics control. In voltage harmonics control, a reference current calculation algorithm has been derived accordingly to ensure that the dc link voltage is maintained constant and the supply side power factor is kept close to unity. In current harmonics control, a plug-in repetitive controller is designed to achieve low THD line currents of the three phase PWM boost rectifier. The proposed analysis and hybrid current control scheme have been validated by experimental test results on a 1.6 kVA laboratory based PWM rectifier. Test results obtained confirm that the proposed control scheme enhances the performance of the PWM rectifier over the conventional one.
机译:本文介绍了混合电流控制方案,以最小化DC链路电压和奇数谐波在线电流下的偶然顺序谐波,在扭曲和不平衡的电源电压条件下。混合电流控制方案由传统的PI和重复控制器(RC)组成。基于正极同步旋转框架中的三相PWM升压整流器的数学模型,从分析的观点研究了对线侧电流的失真电源电压的影响。控制任务分为:(a)DC-Link电压谐波控制和(B)线侧电流谐波控制。在电压谐波控制中,相应地导出了参考电流计算算法,以确保DC链路电压保持恒定,并且供应侧功率因数保持接近Unity。在当前的谐波控制中,插入式重复控制器旨在实现三相PWM升压整流器的低THD线路电流。所提出的分析和混合电流控制方案已经通过实验测试结果验证了1.6 kVA实验室的PWM整流器。获得的测试结果证实,所提出的控制方案通过传统的控制方案增强了PWM整流器的性能。

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