CSCF: a chaotic sine cosine firefly algorithm for practical application problems

被引:0
|
作者
Bryar A. Hassan
机构
[1] Kurdistan Institution for Strategic Studies and Scientific Research,Department of Computer Networks, Technical College of Informatics
[2] Sulaimani Polytechnic University,undefined
来源
关键词
CSCF; Engineering design problems; Variants; Chaotic maps; Optimization function;
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学科分类号
摘要
Recently, numerous meta-heuristic-based approaches are deliberated to reduce the computational complexities of several existing approaches that include tricky derivations, very large memory space requirement, initial value sensitivity, etc. However, several optimization algorithms namely firefly algorithm, sine–cosine algorithm, and particle swarm optimization algorithm have few drawbacks such as computational complexity and convergence speed. So to overcome such shortcomings, this paper aims in developing a novel chaotic sine–cosine firefly (CSCF) algorithm with numerous variants to solve optimization problems. Here, the chaotic form of two algorithms namely the sine–cosine algorithm and the firefly algorithms is integrated to improve the convergence speed and efficiency thus minimizing several complexity issues. Moreover, the proposed CSCF approach is operated under various chaotic phases and the optimal chaotic variants containing the best chaotic mapping are selected. Then numerous chaotic benchmark functions are utilized to examine the system performance of the CSCF algorithm. Finally, the simulation results for the problems based on engineering design are demonstrated to prove the efficiency, robustness and effectiveness of the proposed algorithm.
引用
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页码:7011 / 7030
页数:19
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