基于分散逆变器的交流微电网的下垂控制及不同馈线阻抗的影响分析

B. Kumar, Rahul Sharma
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引用次数: 0

摘要

并联逆变器运行中最著名的方法是下垂控制,它可以在不使用任何关键通信线路的情况下,根据不同的负载情况对孤岛微电网或并网系统中的逆变器进行潮流控制,也可用于集成多个能源以满足负载的有功和无功要求。本文将下垂控制应用于分散式逆变器并联运行中,分析了不同类型馈线阻抗及其X/R比,以及并联运行中实现有功、无功比例准确分担的情况。利用Matlab/Simulink对所提出的下垂控制进行了验证。仿真结果表明,所提出的下垂控制方法能较好地控制交流微电网的电压、频率、有功和无功功率。
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Droop control in decentralized inverter-based AC microgrid and the analysis of the effect of different types of feeder impedances
The most well-known approach for parallel inverter operation is droop control, which is employed in the control of inverters of the power flow in the islanded microgrids or grid connected system according to the different load conditions without using any critical communication line and also useful in integrating several energy sources to meet the active and reactive power requirements of loads. In this paper, the droop control is implemented in the parallel operations of decentralized inverters, and analysis has been done with different types of feeder impedance and their X/R ratios and the parallel operation providing proportional and accurate sharing of active and reactive power. The proposed droop control is validated using Matlab/Simulink. The simulation results show that the suggested droop control approach can satisfactorily manage voltage, frequency, active and reactive power in an AC microgrid.
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