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Analytical Solutions for Power Flow Equations Based on the Multivariate Quotient-Difference Method

机译:基于多元商差法的电流方程分析解

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This paper proposes a method of obtaining the approximate analytical solutions for power flow equations based on the multivariate quotient-difference method. The power flow solutions for different operating conditions can be directly obtained by scaling multiple symbolic variables in the analytical solutions, such that the power injections or consumptions of selected buses or groups of buses can be independently adjusted. This method first uses the multi-dimensional holomorphic embedding method to derive the power flow solutions in the form of multivariate power series. Then, the multivariate quotient-difference method is applied to transform multivariate power series (MPS) to multivariate Padé approximants (MPA) to expand the radius of convergence (ROC), so that the accuracy of the derived analytical solutions can be significantly increased. This method can adapt to many online applications, since the analytical solution can be derived offline and evaluated online by only plugging values into the system symbolic variables according to actual operating conditions. This proposed method is validated in detail on the IEEE 39-bus New England power system considering independent load variations in multiple regions.
机译:本文提出了一种基于多元商差法获取功率流方程的近似分析解的方法。可以通过在分析解决方案中缩放多个符号变量来直接获得不同操作条件的电流解决方案,使得可以独立地调整所选择的总线或公共汽车组的功率注入或消耗。该方法首先使用多维全象嵌入方法来推导多元动力系列形式的电流解决方案。然后,将多元商差法应用于将多变量功率系列(MPS)转换为多变量Padé近似剂(MPA)以扩展收敛半径(ROC),从而可以显着增加推导的分析解决方案的准确性。此方法可以适应许多在线应用程序,因为可以根据实际操作条件将分析解决方案终止并通过将值置入系统符号变量,在线评估。在考虑多个区域中的独立负载变化的IEEE 39总线新英格兰电力系统上详细验证了该提出的方法。

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