Solution of optimal reactive power dispatch by Lévy-flight phasor particle swarm optimization

Milad Gil , Ebrahim Akbari , Abolfazl Rahimnejad , Mojtaba Ghasemi , S. Andrew Gadsden
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Abstract

Optimal reactive power dispatch (ORPD) problems are important tools for the sake of security and economics of power systems. The ORPD problems are nonlinear optimization problems to minimize the real power losses and voltage profile enhancement by optimizing several discrete and continuous control variables. This paper proposes a Lévy-flight phasor particle swarm optimization (LPPSO) for solving ORPD problems while considering real power losses and voltage profile in two standard power systems. The simulation results demonstrate that the LPPSO algorithm proves itself as an acceptable method for reaching a more optimal solution for the ORPD problems.

Abstract Image

用莱维飞行相位粒子群优化法解决最佳无功功率调度问题
最优无功功率调度(ORPD)问题是确保电力系统安全性和经济性的重要工具。无功优化调度问题是一种非线性优化问题,通过优化多个离散和连续控制变量,最大限度地减少实际功率损耗和改善电压曲线。本文提出了一种莱维飞行相位粒子群优化算法(LPPSO),用于解决 ORPD 问题,同时考虑两个标准电力系统中的实际功率损耗和电压曲线。仿真结果表明,LPPSO 算法是一种可接受的方法,能为 ORPD 问题找到更优化的解决方案。
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