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Modeling of distributed generators and converters control for power flow analysis of networked islanded hybrid microgrids

机译:分布式发电机和转换器控制网络孤岛杂交微电网电流分析的建模

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This paper proposes the incorporation of distributed and decentralized control models of generators and converters into the power flow analysis of islanded hybrid microgrids (IHMG). The absence of a slack bus in an islanded microgrid presents challenges to its frequency and voltage regulation as well as power flow calculation. While droop mechanism as the primary control has been well incorporated into load flow analysis, distributed secondary control has only recently been developed for islanded microgrids. This paper proposes a distributed secondary control for a) generators in an AC subgrid of an IHMG and b) interlinking converters in networked IHMGs. Both the distributed and droop control are incorporated into a three-phase power flow calculation based on a modified Backward Forward Sweep method. The algorithm has been tested on several case studies, and the power flow results have been verified against a time-domain simulation. The proposed method proves to be accurate and useful for the planning and design of three-phase networked IHMGs.
机译:本文提出将发电机和转换器的分布式和分散控制模型纳入岛立杂交微电网(IHMG)的电力流分析中。在岛状微电网中缺少狭小的总线对其频率和电压调节以及功率流量计算具有挑战。虽然作为主要控制的下垂机制已经充分结合到负载流量分析中,但仅用于孤岛微电网的分布式二次控制。本文提出了A)在网络化IHMG中的IHMG和B)互连转换器的AC子片中A)发生器的分布式二级控制。分布式和下垂控制都被纳入基于修改后向前扫描方法的三相功率流量计算。该算法已经在几个案例研究上进行了测试,并且验证了电流结果针对时域模拟验证。所提出的方法证明是准确的,可用于三相网络IHMG的规划和设计。

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