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Optimal power flow considering intermittent solar and wind generation using multi-operator differential evolution algorithm

delete2024-07-01
delete7
PRE
AI
K
Karam M. Sallam
M
Md. Alamgir Hossain *
S
Seham Elsayed
R
Ripon K. Chakrabortty
M
Michael J. Ryan
M
M. A. Abido
DOI:10.1016/j.epsr.2024.110377delete
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摘要

摘要

En 中文
In this paper, a multi-operator differential evolution algorithm (MODE) is proposed to solve the Optimal Power Flow problem, called MODE-OPF. The MODE-OPF utilizes the strengths of more than one differential evolution operator in a single algorithmic framework. Additionally, an adaptive method is proposed to update the number of solutions evolved by each DE operator based on both the diversity of the population and the quality of solutions. This adaptive method has the ability to maintain diversity at the early stages of the optimization process and boost convergence at the later ones. The performance of the proposed MODE-OPF is tested by solving OPF problems for both small and large IEEE bus systems (i.e., IEEE-30 and IEEE-118) while considering intermittent solar and wind power generation. To prove the suitability of this proposed algorithm, its performance has been compared against several state-of-the-art optimization algorithms, where MODE-OPF outperforms other algorithms in all experimental results thereby improving a network's performance with lower cost. MODE-OPF decreases the total generation cost up to 24.08%, the real power loss up to 6.80% and the total generation cost with emission up to 8.56%.
Keyword:
Evolutionary algorithms
Differential evolution
Constraints handling techniques
Optimal power flow
Renewable energy

期刊

Electric Power Systems Research 封面图
Electric Power Systems Research
IF:
4.2
论文数:
1.2W
被引数:
2.2W

机构

G
Griffith University
学者数:
1.5W
论文数: 1.6W
被引数: 2.5W
U
University of Sharjah
学者数:
5.9K
论文数: 5.5K
被引数: 8.8K
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