Economic Load Dispatch using IYSGA

Mandhir Singh Brar, G. Brar
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Abstract

The Economic Load Dispatch (ELD) problem is a pivotal aspect of power system management, focusing on the efficient allocation of power generation among various units to meet the demand while minimizing costs. This research paper presents an Improved Yellow Saddle Goat Fish Algorithm (IYSGA) based method for resolving ELD issues. The key objective of proposed IYSGA method is to reduce error between demanded and generated load along with its unit cost. This objective is accomplished by using YSGA whose exploration ability is improved by exploring ability of Grasshopper Optimization Algorithm (GOA). By implementing IYSGA in given ELD problem, the convergence rate, exploring ability and solution quality is enhanced. The fitness function is determined by IYSGA in terms of error and cost reduction, which should be as minimum as possible. The simulations are performed on standardized IEEE bus system with 3-unit and 6-units to meet load demand of 850MW to 1263MW respectively. The experimental simulations conducted provide evidence that the proposed approach met the load demand with zero error. Furthermore, proposed method attained best cost of $8197.633 and $15,285.7055 for the 3-unit and 6-unit generation unit. These outcomes underscore the robustness and superiority of the proposed method in addressing the Economic Load Dispatch (ELD) problem, emphasizing its capacity to optimize power generation with unparalleled precision and cost-effectiveness. 
使用 IYSGA 进行经济负荷调度
经济负荷调度(ELD)问题是电力系统管理的一个关键方面,其重点是在各机组之间有效分配发电量,以满足需求,同时最大限度地降低成本。本研究论文提出了一种基于改进黄鞍山羊鱼算法(IYSGA)的方法来解决 ELD 问题。所提出的 IYSGA 方法的主要目标是减少需求与发电负荷之间的误差及其单位成本。这一目标是通过使用 YSGA 来实现的,YSGA 的探索能力通过蚱蜢优化算法 (GOA) 的探索能力得到了提高。通过在给定的 ELD 问题中实施 IYSGA,收敛速度、探索能力和解决方案质量都得到了提高。IYSGA 确定了误差和成本降低方面的适应度函数,该函数应尽可能小。仿真在标准化的 IEEE 总线系统上进行,该系统有 3 个单元和 6 个单元,分别满足 850MW 至 1263MW 的负荷需求。实验模拟证明,所提出的方法能满足负载需求,误差为零。此外,对于 3 台和 6 台发电机组,建议的方法分别获得了 8197.633 美元和 15285.7055 美元的最佳成本。这些结果凸显了所提方法在解决经济负荷调度(ELD)问题方面的稳健性和优越性,强调了该方法以无与伦比的精确性和成本效益优化发电的能力。
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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