论文标题

CSCF:用于实际应用问题的混乱正弦余弦算法

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

论文作者

Hassan, Bryar A.

论文摘要

最近,审议了许多基于荟萃分析的方法,以减少几种现有方法的计算复杂性,包括棘手的推导,非常庞大旨在开发一种新型混乱的正弦余弦萤火虫(CSCF)算法,并具有许多变体来解决优化问题。在这里,两种算法的混乱形式,即正弦余弦算法(SCA)和萤火虫(FF)算法,以提高收敛速度和效率,从而最大程度地减少了几个复杂性问题。此外,提出的CSCF方法是在各种混沌阶段进行的,并且选择了包含最佳混沌映射的最佳混沌变体。然后利用许多混沌基准功能来检查CSCF算法的系统性能。最后,证明基于工程设计的问题的仿真结果证明了所提出算法的效率,鲁棒性和有效性。

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, particle swarm optimization algorithm have few drawbacks such as computational complexity, convergence speed etc. 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 (SCA) and the Firefly (FF) algorithms are 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 is 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.

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