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Multifunctional VSC Controlled Microgrid Using Instantaneous Symmetrical Components Theory

机译:基于瞬时对称分量理论的多功能VSC控制微电网

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摘要

This paper proposes a control scheme to control the microgrid side voltage–source converter ( $mu $ G-VSC) using instantaneous symmetrical components theory. The $mu $ G-VSC with proposed control can be utilized 1) as a bidirectional power sharing converter to control the power flow from the dc side to the ac side and vice versa, based on renewable power available at the dc link; 2) as a power quality compensator with the features of reactive power compensation, load balancing, and mitigation of current harmonics generated by nonlinear loads at the point of common coupling, thus enabling the grid to supply only sinusoidal current at unity power factor; and 3) to damp out the oscillations in the $mu $ G-VSC currents effectively using damping filter in the control algorithm. The mathematical models are derived and stability aspects are analyzed in detail through the frequency domain approach. The multifunctional features of the proposed control algorithm are demonstrated using extensive simulation studies and are also validated through experimental results.
机译:本文提出了一种基于瞬时对称分量理论的微电网侧电压源转换器(μmu$ G-VSC)的控制方案。具有建议的控制功能的μG-VSC可以用于以下方面:1)作为双向功率共享转换器,根据直流链路上的可再生功率控制从直流侧到交流侧的功率流,反之亦然; 2)作为电能质量补偿器,具有无功补偿,负载平衡以及在公共耦合点减轻非线性负载产生的电流谐波的功能,从而使电网只能以单位功率因数提供正弦电流;和3)使用控制算法中的阻尼滤波器有效地衰减μG-VSC电流中的振荡。通过频域方法推导了数学模型并详细分析了稳定性方面。通过广泛的仿真研究证明了所提出控制算法的多功能特性,并通过实验结果对其进行了验证。

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