A Chaotic Krill Herd Technique for Solving Combined Economic Emission Dispatch

B. Bentouati, Kelthoum Hachani, S. Chettih, R. El-Sehiemy
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Abstract

The economic power dispatch (EPD) problem aims to find the optimal operational settings of power generating units with minimizing the entire production costs of generation and all system constraints are kept into their acceptable limitations. Meanwhile, achieving this economical operation based on the reduction of the fuel cost and fossil fuel fired power plant emission should be as little as possible. Another nonlinear framework, with contradictory objectives, called combined economical emission power dispatch (CEEPD) is considered as the target framework in this study. The CEEPD framework is subjected to a set of operational equality and inequality constraints. In terms of the solution methodology, this paper is focused at developing a novel optimization algorithm called Chaotic Krill Herd Algorithm (CKHA) as an efficient tool for solving non-convex EPD and CEEPD frameworks. The proposed CKHA is tested on several IEEE test systems for refining its convergence and therefore aggregating the overall solution method. The numerical results clearly show the dominance of CKHA in finding the competitive best fitness functions compared with the advanced methods those published in the literature.
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求解组合经济排放调度的混沌磷虾群技术
经济电力调度问题的目标是寻找发电机组的最优运行设置,使发电机组的总生产成本最小,并使系统的所有约束都保持在可接受的极限内。同时,在降低燃料成本和化石燃料发电厂排放的基础上实现这种经济运行,应该尽可能少。本文将另一种目标相互矛盾的非线性框架——联合经济排放电力调度(CEEPD)作为目标框架。CEEPD框架受到一组操作相等和不相等约束。在求解方法方面,本文的重点是开发一种新的优化算法,称为混沌磷虾群算法(CKHA),作为求解非凸EPD和CEEPD框架的有效工具。提出的CKHA在多个IEEE测试系统上进行了测试,以改进其收敛性,从而聚合整体解决方法。数值结果清楚地表明,与文献中发表的先进方法相比,CKHA在寻找竞争最优适应度函数方面具有优势。
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来源期刊
EEA - Electrotehnica, Electronica, Automatica
EEA - Electrotehnica, Electronica, Automatica Engineering-Electrical and Electronic Engineering
CiteScore
0.90
自引率
0.00%
发文量
26
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