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Voltage unbalance treatment for distribution network with massively connected distributed generators

机译:大规模连接分布式发电机的配电网电压不平衡处理

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Large scale interconnection of single-phase distributed generation (DG) with utility distribution grid can cause current unbalances resulting in voltage unbalances. The methods of Newton-Raphson and Gauss-Seidel are generally used for power flow's calculation. However, these methods are sometimes complex and their convergences may be long [1]. The iterative process of Newton-Raphson method, using the admittances matrix is practically independent of bus bars number. The calculation's time of Gauss-Seidel method increases almost proportionally with the bus bars. In addition, the calculation's time of the Jacobien's matrix and each iterative process are considerably long for the Newton-Raphson method. In this paper, a method based on the impedance order reduction and identification of the power flow's direction is presented. Analytical and simulation studies were performed in order to validate the accuracy of the proposed method. For an application network model, the voltage unbalances are calculated. The results are compared with those of two commercial softwares.
机译:单相分布式发电(DG)与公用配电网的大规模互连会导致电流不平衡,从而导致电压不平衡。牛顿-拉夫森法和高斯-赛德尔法通常用于潮流计算。然而,这些方法有时很复杂,它们的收敛时间可能很长[1]。使用导纳矩阵的牛顿-拉夫森法的迭代过程实际上与母线数无关。高斯-赛德尔法的计算时间几乎与母线成比例地增加。另外,对于牛顿-拉夫森法,雅可比矩阵的计算时间和每个迭代过程都相当长。本文提出了一种基于阻抗降阶和潮流方向识别的方法。为了验证所提出方法的准确性,进行了分析和模拟研究。对于应用网络模型,将计算电压不平衡。将结果与两个商业软件的结果进行比较。

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