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A simple and accurate approach to solve the power flow for balanced islanded microgrids

机译:一种解决平衡孤岛微电网潮流的简单而准确的方法

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摘要

Power flow studies are very important in the planning or expansion of power system. With the integration of distributed generation (DG), micro-grids are becoming attractive. So, it is important to study the power flow of micro-grids. In grid connected mode, the power flow of the system can be solved in a conventional manner. In islanded mode, the conventional method (like Gauss Seidel) cannot be applied to solve power flow analysis. Hence some modifications are required to implement the conventional Gauss Seidel method to islanded micro-grids. This paper proposes a Modified Gauss Seidel (MGS) method, which is an extension of the conventional Gauss Seidel (GS) method. The proposed method is simple, easy to implement and accurate in solving the power flow analysis for islanded microgrids. The MGS algorithm is implemented on a 6 bus test system. The results are compared against the simulations results obtained from PSCAD/EMTDC which proves the accuracy of the proposed MGS algorithm.
机译:潮流研究在电力系统的规划或扩展中非常重要。随着分布式发电(DG)的集成,微电网变得越来越有吸引力。因此,研究微电网的潮流至关重要。在并网模式下,系统的功率流可以通过常规方式解决。在孤岛模式下,常规方法(如Gauss Seidel)无法应用于求解潮流分析。因此,需要进行一些修改才能将常规的高斯Seidel方法实现到孤岛微电网。本文提出了一种改进的高斯Seidel(MGS)方法,它是对传统高斯Seidel(GS)方法的扩展。该方法简单,易于实现,并且在求解孤岛微电网的潮流分析中具有很高的准确性。 MGS算法在6总线测试系统上实现。将结果与从PSCAD / EMTDC获得的仿真结果进行比较,证明了所提出的MGS算法的准确性。

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