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Achieving maximum possible power factor with single-phase shunt active power filter under distorted supply condition

机译:在电源供应失真的情况下,使用单相并联有源滤波器实现最大可能的功率因数

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In this paper, a new control approach for the load compensation using single-phase shunt active power filter (APF) under distorted supply condition is presented. The objective of the proposed approach is to achieve maximum possible power factor under distorted supply condition keeping total demand distortion (TDD) within the acceptable limit. To achieve unity power factor (UPF) under sinusoidal supply, the compensated source current should be harmonic free (HF). On the other hand under distorted supply, the source current waveform should have same shape as supply voltage including all the harmonics of voltage for UPF operation. The requirements of harmonic free source current and high power factor are contradictory to each other under distorted supply voltage. Hence there should be a compromised operation between these two important aspects of load compensation. The proposed control approach presented in this paper always ensures maximum power factor by exploiting TDD limits set by standards. The proposed algorithm is validated through simulation studies perform under MATLAB/ SIMULINK environment. All the details of this work are presented.
机译:本文提出了一种在供电条件失真的情况下,采用单相并联有源电力滤波器(APF)进行负载补偿的新控制方法。提出的方法的目的是在失真的供电条件下实现最大可能的功率因数,将总需求失真(TDD)保持在可接受的范围内。为了在正弦电源下达到单位功率因数(UPF),补偿后的源电流应为无谐波(HF)。另一方面,在电源失真的情况下,源电流波形应具有与电源电压相同的形状,包括用于UPF操作的所有电压谐波。在电源电压失真的情况下,无谐波源电流和高功率因数的要求彼此矛盾。因此,在负载补偿的这两个重要方面之间应该存在折衷的操作。本文提出的控制方法总是通过利用标准设置的TDD限制来确保最大功率因数。通过在MATLAB / SIMULINK环境下进行的仿真研究验证了该算法的有效性。介绍了这项工作的所有细节。

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