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A Power Flow Algorithm with Three-Order Convergence Rate

机译:三阶收敛速率的潮流算法

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摘要

A power flow algorithm with three-order convergence is proposed, which make full use of the second order derivative information of power flow equations, and it can decrease the iterations effectively. To reduce calculation burden of Hession matrix, A new power flow model is given in the paper. Both node voltages and injected currents are treated as variables. Traditional power flow equations are departed to linear network equations and nonlinear node equations. The Hession matrix of the nonlinear equations is const matrix with simple structure. Simulation results of IEEE test cases and several real systems show that the proposed method can converge after only 2~3 iterations with fast speed.
机译:提出了一种三阶收敛的潮流算法,该算法充分利用潮流方程的二阶导数信息,可以有效地减少迭代次数。为了减轻Hession矩阵的计算负担,提出了一种新的潮流模型。节点电压和注入电流均视为变量。传统的潮流方程被分解为线性网络方程和非线性节点方程。非线性方程的Hession矩阵是结构简单的const矩阵。 IEEE测试用例和几个实际系统的仿真结果表明,该方法仅需2〜3次迭代即可收敛,且速度较快。

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