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Weighted differential evolution algorithm for numerical function optimization: a comparative study with cuckoo search, artificial bee colony, adaptive differential evolution, and backtracking search optimization algorithms

机译:数值函数优化的加权差分演化算法:杜鹃搜索,人工群落,自适应差分演化和回溯搜索优化算法的比较研究

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摘要

In this paper, weighted differential evolution algorithm (WDE) has been proposed for solving real-valued numerical optimization problems. When all parameters of WDE are determined randomly, in practice, WDE has no control parameter but the pattern size. WDE can solve unimodal, multimodal, separable, scalable, and hybrid problems. WDE has a very fast and quite simple structure, in addition, it can be parallelized due to its non-recursive nature. WDE has a strong exploration and exploitation capability. In this paper, WDE's success in solving CEC' 2013 problems was compared to 4 different EAs (i.e., CS, ABC, JADE, and BSA) statistically. One 3D geometric optimization problem (i.e., GPS network adjustment problem) and 4 constrained engineering design problems were used to examine the WDE's ability to solve real-world problems. Results obtained from the performed tests showed that, in general, problem-solving success of WDE is statistically better than the comparison algorithms that have been used in this paper.
机译:本文已经提出了加权差分演进算法(WDE)来解决实际值的数值优化问题。当WDE的所有参数随机确定时,在实践中,WDE没有控制参数,但图案大小。 WDE可以解决单向,多模式,可分离,可扩展和混合问题。 WDE具有非常快速且非常简单的结构,此外,由于其非递归性质,它可以并行化。 WDE具有强大的勘探和开发能力。在本文中,WDE在解决CEC 2013问题中的成功与4种不同的EAS(即,CS,ABC,玉器和BSA)进行了统计学。一个3D几何优化问题(即,GPS网络调整问题)和4个受限的工程设计问题用于检查WDE解决现实世界问题的能力。从执行测试获得的结果表明,通常,WDE的问题解决方案的成功比本文中使用的比较算法更好。

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