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A coevolutionary differential evolution with harmony search for reliability-redundancy optimization

机译:带有和谐搜索的协进化微分进化用于可靠性-冗余优化

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Solving reliability-redundancy optimization problems via meta-heuristic algorithms has attracted increasing attention in recent years. In this paper, an effective coevolutionary differential evolution with harmony search algorithm (CDEHS) is proposed to solve the reliability-redundancy optimization problem by dividing the problem into a continuous part and an integer part. In CDEHS, two populations evolve simultaneously and cooperatively, where one population for the continuous part evolves by means of differential evolution while another population for the integer part evolves by means of harmony search. After half of the whole evolving process, the integer part stops evolving and provides the best solution to the other part for further evolving with differential evolution. Simulations results based on three typical problems and comparisons with some existing algorithms show that the proposed CDEHS is effective, efficient and robust for solving the reliability-redundancy optimization problem.
机译:近年来,通过元启发式算法解决可靠性-冗余性优化问题已引起越来越多的关注。为了解决可靠性-冗余优化问题,将问题分为连续部分和整数部分,提出了一种有效的协和微分进化与和谐搜索算法(CDEHS)。在CDEHS中,两个种群同时协调地进化,其中连续部分的种群通过差分进化而进化,而整数部分的另一种群通过和声搜索而进化。在整个进化过程的一半之后,整数部分停止进化,并为另一部分提供最佳解决方案,以便随着差分进化进一步进化。基于三个典型问题的仿真结果以及与现有算法的比较表明,所提出的CDEHS算法对于解决可靠性-冗余优化问题是有效,高效和鲁棒的。

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