Artificial-immune-based for solving economic dispatch in power system

Titik Khawa Abdul Rahiiian, Zuhaila Mal Yasin, Wan Noraiiiiii
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引用次数: 52

Abstract

This paper presents an artificial immune system based optimization approach for solving the economic dispatch problem in a power system. Economic dispatch determines the electrical power to be generated by the committed generating units in a power system so that the generation cost is minimised, while satisfying the load demand simultaneously. The developed artificial immune system optimization technique used the total generation cost as the objective function and represented as the affinity measure. Through genetic evolution, the antibodies with high affinity measure are produced and become the solution. The simulation results reveal that the developed technique is easy to implement, converged within an acceptable execution time and highly optimal solution for economic dispatch with minimum generation cost can be achieved. The result also confirms that AIS based optimization technique can be a useful tool for solving optimal solution in economic dispatch problem, which involves a large number of generating units and at the same time to comply with a large number of constraints.
基于人工免疫的电力系统经济调度解决方法
提出了一种基于人工免疫系统的电力系统经济调度优化方法。经济调度是指在满足负荷需求的同时,使发电成本最小的电力系统中各发电机组的发电量。本文提出的人工免疫系统优化技术以总发电成本为目标函数,用亲和度量表示。通过遗传进化,产生具有高亲和力的抗体,成为解决方案。仿真结果表明,该方法易于实现,可在可接受的执行时间内收敛,并能以最小的发电成本获得经济调度的高度最优解。结果也证实了基于AIS的优化技术对于解决涉及大量发电机组且同时需要遵守大量约束条件的经济调度问题的最优解是一种有用的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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