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首页> 外文期刊>Generation, Transmission & Distribution, IET >Adaptive complex virtual impedance control scheme for accurate reactive power sharing of inverter interfaced autonomous microgrids
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Adaptive complex virtual impedance control scheme for accurate reactive power sharing of inverter interfaced autonomous microgrids

机译:逆变器接口自治微电网精确无功共享的自适应复数虚拟阻抗控制方案

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The mismatched feeder impedance of the voltage-sourced converter (VSC) units may result in reactive power sharing error in the islanded microgrids. This study presents a reactive power sharing strategy for single-phase inverter-based microgrids that eliminates the circulating currents and reduces the coupling between real and reactive powers. The proposed controller is based on an adaptive complex virtual impedance that aims to equalise the$E - Q$EQcharacteristic output of VSCs. The resistive term regulates the virtual voltage drop using the proposed$Delta R_{m v} - P$ΔRvPdroop characteristic, while the inductive one controls the phase angle of VSC current and increases the$X/R$X/Rratio of the microgrid. The proposed strategy does not require a central controller and knowledge of the microgrid lines and loads data and is applicable for the various microgrid topologies. Furthermore, it employs the unidirectional low bandwidth communication link and is robust against the delay and failure of communication channels. The proposed method is implemented using the conventional droop control scheme and presents the medium plug and play capability. Both simulation and experimental case studies using various microgrid topologies are conducted to demonstrate the merits of the proposed scheme.
机译:电压源转换器(VSC)单元的馈线阻抗不匹配可能会导致孤岛微电网中的无功功率分配错误。这项研究提出了一种基于单相逆变器的微电网无功共享策略,该策略消除了循环电流并减少了有功和无功之间的耦合。所提出的控制器基于自适应复数虚拟阻抗,旨在使 n <替代方法> $ E-Q $ E Q n VSC的特征输出。电阻项使用建议的 n <替代方法> $ Delta R _ { rm v}-P $ Δ R v P < / mml:mi> ndroop特征,而感应式控制VSC电流的相位角并增加 n <替代方法> $ X / R $ X / R <内嵌图形xlink:href = “ IET-GTD.2018 .5123.IM3.gif “ /> n的比例。所提出的策略不需要中央控制器以及微电网线和负载数据的知识,并且适用于各种微电网拓扑。此外,它采用单向低带宽通信链路,并且对于通信信道的延迟和故障具有鲁棒性。所提出的方法是使用常规的下垂控制方案实现的,并具有介质即插即用的能力。使用各种微电网拓扑进行了仿真和实验案例研究,以证明所提出方案的优点。

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