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Convergence Analysis on the Power Flow Methods for Distribution Networks with Small Impedance Branches

机译:小阻抗支路配电网潮流计算的收敛性分析

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The small impedance branch is a primary factor that results in the divergence of the power flow methods. The study of the methods of power calculation in Newton-Raphson (N-R) method and backward/forward sweep (BFS) method indicates that the method of power calculation together with small impedances may result in the convergence problem. The impact of small impedance branches on the convergence of the two power flow methods is different because the two methods are different in mechanism. So the ways to improve the convergence performance of the power flow methods are also different. Based on theoretical analysis, a branch dividing method is presented which divides a transformer with small impedance into a transformer with normal impedance and a capacitive line. The proposed method can conveniently and effectively deal with the convergence problem in the BFS method caused by small impedance transformer branches, and experimental results illustrate the effectiveness of the method.
机译:小阻抗支路是导致潮流方法分歧的主要因素。对牛顿-拉夫逊(N-R)方法和后向/前向扫描(BFS)方法中的功率计算方法的研究表明,功率计算方法与小阻抗一起可能会导致收敛问题。小阻抗分支对两种潮流方法收敛的影响是不同的,因为两种方法的机制不同。因此,提高潮流算法收敛性能的方法也有所不同。在理论分析的基础上,提出了一种将阻抗小的变压器分为正常阻抗的变压器和电容线路的分支分割法。所提方法可以方便,有效地解决因小阻抗变压器分支引起的BFS方法的收敛性问题,实验结果证明了该方法的有效性。

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