D. Le, V. N. Dieu
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引用次数: 14

摘要

提出了一种基于伪梯度的粒子群优化(PGPSO)方法求解最优无功调度问题。所提出的粒子群优化算法是基于伪梯度的缩窄因子粒子群优化算法,具有较好的搜索能力。伪梯度在粒子群算法中的实现是为粒子确定合适的运动方向,保证粒子能够快速移动到全局最优解。针对ORPD问题,本文提出的PGPSO具有最小化实际功率损耗、改善电压分布、提高电压稳定性等不同目标,满足发电机无功限值、可切换电容器组限值、母线电压限值、变压器分接开关限值和传输线限值等各种约束条件。所提出的方法已经在IEEE 30总线系统上进行了测试,并与文献中其他PSO变体和其他方法的结果进行了比较。结果表明,在考虑的情况下,所提出的方法获得的总功率损耗、电压偏差和电压稳定指标均小于其他方法。因此,所提出的PGPSO是处理ORPD问题的一种较好的求解方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal reactive power dispatch by pseudo-gradient guided particle swarm optimization
This paper proposes a pseudo gradient based particle swarm optimization (PGPSO) method for solving optimal reactive power dispatch (ORPD) problem. The proposed PGPSO is the particle swarm optimization with constriction factor guided by pseudo-gradient for better search ability. The implementation of the pseudo-gradient in PSO is to determine the suitable direction for particles to guarantee that they can quickly move to global optimal solution. The proposed PGPSO has been implemented for the ORPD problem with different objectives such as minimizing the real power losses, improving the voltage profile, and enhancing the voltage stability satisfying various constraints of reactive power limits of generators, switchable capacitor banks, bus voltage limits, transformer tap changer limits, and transmission line limits. The proposed method has been tested on the IEEE 30-bus system and the obtained results are compared to those from other PSO variants and other methods in the literature. The result comparison has indicated that the proposed method can obtain total power loss, voltage deviation or voltage stability index less than the others for the considered cases. Therefore, the proposed PGPSO can be a favorable solution method for dealing the ORPD problem.
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