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Balance control of grid currents for UPQC under unbalanced loads based on matching-ratio compensation algorithm

机译:基于匹配比补偿算法的不平衡负荷下UPQC网格电流的平衡控制

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In three-phase four-wire systems, unbalanced loads can cause grid currents to be unbalanced, and this may cause the neutral point potential on the grid side to shift. The neutral point potential shift will worsen the control precision as well as the performance of the threephase four-wire unified power quality conditioner (UPQC), and it also leads to unbalanced three-phase output voltage, even causing damage to electric equipment. To deal with unbalanced loads, this paper proposes a matching-ratio compensation algorithm (MCA) for the fundamental active component of load currents, and by employing this MCA, balanced three-phase grid currents can be realized under 100% unbalanced loads. The steady-state fluctuation and the transient drop of the DC bus voltage can also be restrained. This paper establishes the mathematical model of the UPQC, analyzes the mechanism of the DC bus voltage fluctuations, and elaborates the interaction between unbalanced grid currents and DC bus voltage fluctuations; two control strategies of UPQC under three-phase stationary coordinate based on the MCA are given, and finally, the feasibility and effectiveness of the proposed control strategy are verified by experiment results.
机译:在三相四线系统中,不平衡负载可能导致网格电流不平衡,这可能导致网格侧的中性点电位转移。中性点电位偏移将使控制精度及三相统一电能质量调节剂(UPQC)的性能恶化,也导致三相输出电压不平衡,甚至导致电气设备损坏。为了处理不平衡的负载,本文提出了一种用于负载电流的基本有源分量的匹配比补偿算法(MCA),并且通过采用该MCA,可以在100%不平衡负载下实现平衡的三相电流电流。也可以抑制直流母线电压的稳态波动和瞬态下降。本文建立了UPQC的数学模型,分析了直流母线电压波动的机制,并详细说明了不平衡电流与直流母线波动之间的相互作用;给出了基于MCA的三相固定坐标下UPQC的两个控制策略,最后,通过实验结果验证了所提出的控制策略的可行性和有效性。

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