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Power flow calculation of three-phase distribution network based on constant jacobian matrix and newton method

机译:基于常数雅可比矩阵和牛顿法的三相配电网潮流计算

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摘要

According to basic principle of newton method and the characteristics of distribution network, this paper presents a power flow method of constant jacobian matrix suitable for three-phase asymmetric distribution network. Based on reasonable approximation and phase transformation of node voltages and branch currents, jacobian matrix becomes constant during iterative process, which reduces the amount of computation greatly. The presented algorithm is suitable for distribution networks with multiple voltage levels, loops, PV nodes, etc, so it is universal for distribution network. Simulation results show that the algorithm has reliable convergence and stability.
机译:根据牛顿法的基本原理和配电网的特点,提出一种适用于三相非对称配电网的恒雅可比矩阵的潮流方法。基于节点电压和支路电流的合理近似和相位变换,雅可比矩阵在迭代过程中变得恒定,从而大大减少了计算量。所提出的算法适用于具有多个电压等级,回路,光伏节点等的配电网络,因此对于配电网络是通用的。仿真结果表明,该算法具有可靠的收敛性和稳定性。

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