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Accurate Reactive Power Sharing and Harmonic Mitigation in Islanded Microgrids Using Adaptive Virtual Capacitance

机译:使用自适应虚拟电容的孤岛微电网中的准确无功功率共享和谐波缓解

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This paper presents an adaptive virtual capacitance control method for distributed generation (DGs) in an islanded microgrid to mitigate the voltage harmonics at the point of common coupling (PCC). To achieve the control target, the proposed method emulates the inverter output capacitance at the dominant harmonic frequency to compensate for the mismatched voltage drop on the line impedance. In addition, the virtual capacitance at the fundamental frequency is regulated to improve the reactive power sharing performance of the inverter units. The proposed capacitance control method is developed based on simple integral controllers without prior knowledge of the feeder impedances and local nonlinear load currents. By continuously adjusting the inverter output capacitance, the microgrid power sharing performance and voltage quality are ensured despite any load changes. The effectiveness and superiority of the proposed strategy are theoretically analyzed and verified.
机译:本文提出了一种在孤岛微电网中用于分布式发电(DG)的自适应虚拟电容控制方法,以减轻公共耦合点(PCC)处的电压谐波。为了达到控制目标,该方法在主谐波频率下仿真逆变器输出电容,以补偿线路阻抗上的失配压降。另外,调节基频处的虚拟电容以改善逆变器单元的无功功率共享性能。所提出的电容控制方法是基于简单的积分控制器开发的,无需事先了解馈线阻抗和局部非线性负载电流。通过不断调节逆变器输出电容,即使负载发生任何变化,也可以确保微电网的功率共享性能和电压质量。从理论上分析和验证了该策略的有效性和优越性。

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