General Purpose Efficient power flow model representation of network from generation bus to load bus

J. Sandhya, V. B. Raju
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Abstract

In analyzing the electrical networks power flow solution is very essential. There are numerous power flow models for transmission as well as distribution systems. It is also evident from the literatures that several new models exclusively for distribution networks are being developed. It is suggested here that instead of having many models, the models applied for transmission networks can be applied to distribution networks with some modifications. This paper presents the study of several transmission and distribution power systems to explore applicability of the Constant Complex Matrix Power Flow Model (CCMPFM) [1] and also gives comparison with General Purpose Fast Decoupled Power Flow (GFDPF) model [3]. The results demonstrate that the CCMPF model possess more stable convergence for both well-behaved and ill-conditioned systems when compared to GFDPF. This model has strong convergence characteristics for distribution networks also when compared to Stott's model. This CCMPF model can be applied for transmission networks, stand alone radial as well as weakly meshed distribution networks. Also the whole interconnection of transmission and distribution network is studied with one single model and good converging results are obtained. From the results, this paper suggests that a single power flow model is sufficient for studying the entire electric power network right from the generation point to load point without many models.
电网从发电母线到负载母线的高效潮流模型表示
在电网分析中,潮流的求解是至关重要的。输配电系统有许多潮流模型。从文献中还可以明显看出,一些专门用于配电网的新模型正在开发中。建议将输电网的模型稍加修改后,可以应用于配电网,而不必有太多的模型。本文通过对几种输配电系统的研究,探讨了恒定复矩阵潮流模型(CCMPFM)[1]的适用性,并与通用快速解耦潮流模型(GFDPF)[3]进行了比较。结果表明,与GFDPF相比,CCMPF模型对良好和病态系统都具有更稳定的收敛性。与斯托特的模型相比,该模型对配电网也具有很强的收敛特性。该CCMPF模型可应用于输电网、独立径向电网和弱网格配电网。用单一模型对输配网络的整体互联进行了研究,得到了较好的收敛结果。研究结果表明,一个潮流模型足以研究整个电网从发电点到负荷点的全过程,而不需要多个模型。
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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