An interior point method based on continuous Newton's method for optimal power flow

Xiaohui Zhao, Yude Yang, Hua Wei
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引用次数: 5

Abstract

A variant of primal-dual interior point method (PDIPM) based on continuous Newton's method is proposed. In the new algorithm, the Newton's method in PDIPM is replaced with continuous Newton's method. The solution of the nonlinear equations of KKT conditions is transformed to solve a set of autonomous ordinary differential equations. Furthermore, many numerical integration methods (e.g., Runge-Kutta formulas) are used to calculate the formulation of continuous Newton's method. Simulations are carried out to evaluate the performance of the proposed algorithm for solving optimal power flow (OPF) in comparison to PDIPM. The proposed method provides better ability to converge. It is more robust and stable than PDIPM especially under the stressed circumstance of large scale systems.
基于连续牛顿法的最优潮流内点法
提出了一种基于连续牛顿法的原对偶内点法。在新算法中,用连续牛顿法代替了PDIPM中的牛顿法。将KKT条件下的非线性方程的解转化为一组自治常微分方程的解。此外,许多数值积分方法(如龙格-库塔公式)被用于计算连续牛顿法的公式。通过仿真,比较了该算法与PDIPM算法求解最优潮流(OPF)的性能。该方法具有较好的收敛能力。特别是在大型系统的受力情况下,它比PDIPM具有更强的鲁棒性和稳定性。
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