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Comparative study of three-phase grid connected inverter sharing unbalanced three-phase and/or single-phase systems

机译:三相并网逆变器共享不平衡三相和/或单相系统的比较研究

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In a microgrid system, unbalance in the three-phase system is created due to single-phase loads and decentralized single-phase renewable energy sources. This unbalance can be compensated locally at the point of common coupling (PCC) using a three-phase four-wire grid tied inverter. This paper focuses on a comparative study of 3-phase, 4-wire inverter topologies to compensate for positive, negative and zero sequence components of the current injected into the grid. The function of this inverter is to inject power to the grid and additional active power compensation (APC) to support unbalance, load reactive power, and load neutral current. Performance analysis and control of these topologies are being compared to evaluate utilization of dc link, size, control, and ease of implementation. A qualitative comparison of the topologies is provided to illustrate the advantages and disadvantages of the analyzed systems. Simulation and experimental results are presented to support the analysis of 3-phase, 480V, 50kVA system. The experimental results validate the ability of the inverter to provide 4-quadrant control of each phase independently.
机译:在微电网系统中,由于单相负载和分散的单相可再生能源,会导致三相系统不平衡。使用三相四线并网逆变器可以在公共耦合点(PCC)上局部补偿这种不平衡。本文着重于三相4线逆变器拓扑的比较研究,以补偿注入电网的电流的正序,负序和零序分量。该逆变器的功能是向电网注入功率和附加的有功功率补偿(APC),以支持不平衡,负载无功功率和负载中性电流。比较了这些拓扑的性能分析和控制,以评估直流链路的利用率,大小,控制和易于实施。提供了拓扑的定性比较,以说明所分析系统的优缺点。给出了仿真和实验结果,以支持对480V,50kVA三相系统的分析。实验结果验证了逆变器能够独立提供每相四象限控制的能力。

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