A piecewise parallel solution of current mismatch based Newton-Raphson power flow

R. Gnanavignesh, G. Gurrala, U. Shenoy
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引用次数: 1

Abstract

This paper proposes a piecewise parallel solution to the Newton-Raphson power flow problem using the concept of current mismatches, instead of power mismatches. The given large network is divided into a number of smaller sub-networks. Computations are performed upon the individual sub-networks. Then the sub-network solutions are consolidated to obtain the solution of the original network using the Large Change Sensitivity concept. No restrictions are imposed on the number and size of the sub-networks in this method. Also, complications such as temporary slack bus assignment for each sub-network and bus reordering do not arise. The number of iterations required for convergence remains exactly the same as that for the original undivided network. The proposed algorithm is tested on 118, 300, 2383, 6515, 9241 and 13659 bus test systems. For large systems, a speed up of 5 to 6 times is obtained compared to the sequential current mismatch based solution.
基于牛顿-拉夫森潮流的电流失配分段并行解
本文利用电流失配的概念,而不是功率失配的概念,提出了牛顿-拉夫森潮流问题的分段并行求解方法。给定的大网络被分成许多较小的子网。计算在各个子网络上执行。然后利用大变化灵敏度的概念对各子网络解进行整合,得到原网络的解。这种方法对子网的数量和大小没有限制。此外,不会出现诸如每个子网的临时空闲总线分配和总线重新排序等复杂问题。收敛所需的迭代次数与原始未划分网络完全相同。该算法在118、300、2383、6515、9241和13659总线测试系统上进行了测试。对于大型系统,与基于顺序电流不匹配的解决方案相比,获得了5到6倍的速度提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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