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Determining the Responsibility of Three-Phase Unbalanced Sources Based on RICA

机译:基于RICA确定三相不平衡来源的责任

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摘要

Voltage unbalance is one of the main power quality problems, and the source of many negative effects on utilities that are experienced by customers. In this paper, a method based on robust independent component analysis (RICA) for responsibility division of unbalanced sources is proposed for voltage unbalance. According to the weak correlation between negative-sequence voltage and upstream and downstream current fluctuation at the point of common coupling (PCC), the independent component of the negative-sequence voltage and current fluctuation at the point of common coupling is obtained by RICA. The blind source mixing coefficient matrix can be obtained according to the least squares method. The equivalent negative-sequence impedance on both sides of the PCC can be obtained using the linear correlation between the mixing coefficients. Finally, according to the principle of partial pressure, the unbalance contribution of the upstream and downstream at the PCC is calculated. The method is accurate for upstream and downstream impedance estimation compared with the traditional method, and has a strong anti-interference ability. When the background noise or system fluctuation is large, the responsibility division result is still accurate. The correctness and effectiveness of the proposed method are proven by the simulation of the experimental circuit.
机译:电压不平衡是主要的电源质量问题之一,以及客户对客户经历的公用事业的许多负面影响的来源。本文提出了一种基于强大的独立分量分析(RICA)的不平衡源划分的方法,用于电压不平衡。根据公共耦合点(PCC)的负序电压和上游电流波动之间的弱相关性,通过RICA获得了公共耦合点处的负序电压和电流波动的独立分量。盲源混合系数矩阵可以根据最小二乘法获得。可以使用混合系数之间的线性相关性获得PCC两侧的等效负序阻抗。最后,根据部分压力的原理,计算PCC上游和下游的不平衡贡献。该方法对于与传统方法相比,对上游和下游阻抗估计准确,具有强烈的抗干扰能力。当背景噪声或系统波动大时,责任划分结果仍然准确。通过模拟实验电路来证明所提出的方法的正确性和有效性。

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