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首页> 外文期刊>Applied Intelligence: The International Journal of Artificial Intelligence, Neural Networks, and Complex Problem-Solving Technologies >Enhanced harmony search algorithm with circular region perturbation for global optimization problems
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Enhanced harmony search algorithm with circular region perturbation for global optimization problems

机译:增强了与全局优化问题循环扰动的和声搜索算法

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摘要

To improve the searching effectiveness of the harmony search (HS) algorithm, an enhanced harmony search algorithm with circular region perturbation (EHS_CRP) is proposed in this paper. In the EHS_CRP algorithm, a global and local dimension selection strategy is designed to accelerate the search speed of the algorithm. A selection learning operator based on the global and local mean level is proposed to improve the balance between exploration and exploitation. Circular region perturbation is employed to avoid the algorithm stagnation and get a better exploration region. To assess performance, the proposed algorithm is compared with 10 state-of-the-art swarm intelligent approaches in a large set of global optimization problems. The simulation results confirm that EHS_CRP has a significant advantage in terms of accuracy, convergence speed, stability and robustness. Moreover, EHS_CRP performs better than other tested methods in engineering design optimization problems. Thus, the EHS_CRP algorithm is a viable and reliable alternative for some difficult and multidimensional real-world problems.
机译:为了提高和声搜索(HS)算法的搜索效果,本文提出了一种增强的和声搜索算法(ehs_crp)。在EHS_CRP算法中,旨在加速算法的搜索速度的全局和本地维度选择策略。建议基于全球和本地均值水平的选择学习运营商,以提高勘探和剥削之间的平衡。采用圆形区域扰动以避免算法停滞并获得更好的勘探区域。为了评估性能,将所提出的算法与10个全局优化问题中的10个最先进的智能方法进行比较。仿真结果证实,EHS_CRP在准确性,收敛速度,稳定性和稳健性方面具有显着的优势。此外,EHS_CRP比工程设计优化问题中的其他测试方法更好。因此,EHS_CRP算法是一种可行且可靠的替代方案,用于一些困难和多维的现实世界问题。

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