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Evaluation of the Performance of Droop Control Scheme for Interlinking Converter in Stand-Alone Hybrid Microgrid

机译:单独混合微电网中互通转换器下垂控制方案性能评价

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In an AC-DC hybrid microgrid, the AC and DC sub-grids accommodate both the sources and the loads which can be either AC or DC by nature. Interfacing of these AC and DC sub-grids are done by interlinking power converters. The converter can operate in rectifier and inverter or stop mode, according to the situation condition demands. Interlinking power converter which links the AC and DC sub-grids in the hybrid microgrid plays a vital role for achieving the stability of whole microgrid. A bidirectional droop control method for the converter is proposed, which measures the power demand of AC sub-grid and DC sub-grid in accordance with terminal AC bus frequency and terminal DC bus voltage, respectively. It also determines the direction and the magnitude of the power transfer through converter. The control of power being transferred between AC and DC sub-grids can be achieved easily using the proposed strategy. The effectiveness of control strategy is verified by time-domain simulation in MATLAB/Simulink
机译:在AC-DC混合微电网中,AC和DC子网格容纳通过自然可以是AC或DC的来源和负载。通过互通功率转换器来完成这些AC和DC子网格的接口。转换器可以根据情况条件要求在整流器和逆变器或停止模式下操作。将杂交微电池中的AC和DC子网格链接的互通功率转换器为实现整个微电网的稳定性起着至关重要的作用。提出了一种用于转换器的双向下垂控制方法,其分别根据终端交流总线频率和终端直流母线电压测量AC子电网和DC子网格的电力需求。它还通过转换器确定功率传输的方向和幅度。可以使用所提出的策略轻松实现在AC和DC子网格之间传输的电力控制。通过Matlab / Simulink中的时域仿真验证了控制策略的有效性

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