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Design of a Plug-In Repetitive Control Scheme for Eliminating Supply-Side Current Harmonics of Three-Phase PWM Boost Rectifiers Under Generalized Supply Voltage Conditions

机译:通用电源电压条件下消除三相PWM Boost整流器电源侧电流谐波的插入式重复控制方案设计

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This paper presents a digital repetitive control (RC) scheme to minimize the even-order harmonics at the dc link voltage and odd-order harmonics in the line-side currents under distorted and unbalanced supply voltage conditions. The proposed current control scheme consists of a conventional PI and a plug-in repetitive controller. On the basis of the mathematical model of the three-phase pulsewidth-modulated (PWM) boost rectifier under the generalized supply voltage conditions, the control task is divided into: 1) dc-link voltage harmonics control and 2) line-side current harmonics control . In the voltage harmonics control scheme, a reference current calculation algorithm has been derived accordingly to ensure that the dc link voltage is maintained constant at the demanded value and the supply-side power factor is kept close to unity. In the line-side current harmonics control scheme, a plug-in repetitive controller is designed to achieve low total harmonic distortion (THD) line-side currents of the three-phase PWM boost rectifier. The experimental test results obtained from a 1.6-kVA laboratory-based PWM rectifier confirm that the proposed control scheme can reduce the line-side current THD from 16.63% to 4.70%, and improve the dc-link voltage tracking accuracy substantially over the conventional PI-based controller.
机译:本文提出了一种数字重复控制(RC)方案,以在失真和不平衡的电源电压条件下,将直流链路电压处的偶数阶谐波和线路侧电流中的奇数阶谐波最小化。提出的电流控制方案由常规PI和插入式重复控制器组成。基于广义电源电压条件下三相脉宽调制(PWM)升压整流器的数学模型,控制任务分为:1)直流母线电压谐波控制和2)线路侧电流谐波控制 。在电压谐波控制方案中,相应地推导了参考电流计算算法,以确保直流母线电压保持恒定在所需值,并且电源侧功率因数保持接近统一。在线路侧电流谐波控制方案中,设计了一种插入式重复控制器,以实现三相PWM升压整流器的低总谐波失真(THD)线路侧电流。从基于1.6kVA实验室的PWM整流器获得的实验测试结果证实,所提出的控制方案可以将线路侧电流THD从16.63%降低至4.70%,并且与常规PI相比,可以大大提高直流链路电压跟踪的精度基于的控制器。

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