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A three-phase unbalanced power flow solution with three-phase distribution transformers

机译:三相配电变压器的三相不平衡潮流解决方案

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A three-phase layered power flow solution has been here developed, which can handle distribution transformers with various common winding connections in unbalanced system of multi-voltage levels. In the proposed solution, a sensitivity constant incident matrix between node voltages and injection currents was derived based on path matrix, then a simple direct algorithm in impedance form was utilized to resolve the three-phase unbalanced power flow. An efficient layered algorithm was obtained by dividing a large and complicated distribution network into several small and simple networks (called layers) to overcome the large size problem of incident matrix for a complicated distribution network. Then the size of incident matrix has been reduced and the space requirements have been greatly decreased for the entire system. The exact three-phase transformer models are critical for distribution system analysis. The models for several kinds of main connections have been developed in this paper. The transformer can be considered as one special layer during solving the power flow. The validity and effectiveness of the proposed method and the transformer models have been testified by the IEEE 4 and IEEE 34 test feeder.
机译:在此开发了一种三相分层潮流解决方案,该解决方案可以处理多电压电平不平衡系统中具有各种常见绕组连接的配电变压器。在所提出的解决方案中,基于路径矩阵导出节点电压和注入电流之间的灵敏度常数入射矩阵,然后采用简单的阻抗形式直接算法来解决三相不平衡潮流。通过将大型复杂的配电网络划分为几个小型简单网络(称为层),从而克服了复杂配电网络的入射矩阵的大型问题,从而获得了一种有效的分层算法。然后,减小了入射矩阵的大小,并大大减小了整个系统的空间需求。准确的三相变压器模型对于配电系统分析至关重要。本文开发了几种主要连接的模型。在解决潮流时,可以将变压器视为一层特殊的层。 IEEE 4和IEEE 34测试馈线已经证明了该方法和变压器模型的有效性和有效性。

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