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A DSP Based Optimal Algorithm for Shunt Active Filter Under Nonsinusoidal Supply and Unbalanced Load Conditions

机译:非正弦电源和不平衡负载条件下基于DSP的并联有源滤波器优化算法

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The use of power electronic circuits in a wide range of applications has resulted in distorted current waveforms in the power system. This results in nonsinusoidal voltage drops across the transformers and transmission line impedances, resulting in a nonsinusoidal voltage supply at the point of common coupling. Asymmetrical distribution of large, 1-phi loads further complicates the issue by causing imbalance in the line currents of the 3-phi system. Not only should this imbalance be compensated, other parameters, such as the current total harmonic distortion and the power factor should also be maintained as per the norms. However, the requirements of harmonic free current waveforms and good power factor, under nonsinusoidal voltage conditions, are contradictory to each other. Under these conditions, an optimum performance is the best one can achieve. This paper proposes a new scheme for balancing the currents and obtaining the best compromise between the power factor and current distortion under nonsinusoidal voltage conditions. The technique does not use p-q theory and does not require sequence transformation for power calculations, even though the current is unbalanced. All the details of this work are presented
机译:电力电子电路在广泛的应用中的使用已导致电力系统中的电流波形失真。这会导致跨变压器的非正弦电压降和传输线阻抗,从而在公共耦合点产生非正弦电压。大的1-phi负载的不对称分布会导致3-phi系统的线路电流不平衡,从而使问题进一步复杂化。不仅应补偿这种不平衡,还应按照规范保持其他参数,例如电流总谐波失真和功率因数。然而,在非正弦电压条件下,谐波自由电流波形和良好功率因数的要求是相互矛盾的。在这些条件下,最佳性能是可以达到的最佳性能。本文提出了一种在非正弦电压条件下平衡电流并在功率因数和电流失真之间取得最佳折衷的新方案。该技术不使用p-q理论,并且即使电流不平衡,也不需要用于功率计算的序列变换。介绍了这项工作的所有细节

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