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Engineering optimization by means of an improved constrained differential evolution

机译:通过改进的约束差分演化进行工程优化

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摘要

To efficiently optimize the constrained engineering problems, in this paper, an improved constrained differential evolution (DE) method is proposed, where two improvements are presented. Firstly, to make the DE algorithm converge faster, a ranking-based mutation operator that is suitable to the constrained optimization problems is presented. Secondly, an improved dynamic diversity mechanism is proposed to maintain either infeasible or feasible solutions in the population. Combining the two improvements with the DE algorithm, the proposal is referred to as rank-iMDDE, for short. To evaluate the performance of rank-iMDDE, 24 benchmark functions presented in CEC2006 are selected as the test suite. Moreover, five widely used constrained engineering benchmark problems and four constrained mechanical design problems from the literature are chosen to test the capability of rank-iMDDE for the engineering problems. Experimental results indicate that rank-iMDDE is able to improve the performance of DE in terms of the quality of the final solutions, the convergence rate, and the successful rate. Additionally, it can provide fairly-competitive results compared with other state-of-the-art evolutionary algorithms in both benchmark functions and engineering problems.
机译:为了有效地优化约束工程问题,本文提出了一种改进的约束差分演化(DE)方法,提出了两种改进方法。首先,为了使DE算法收敛更快,提出了一种适合约束优化问题的基于排序的变异算子。其次,提出了一种改进的动态多样性机制,以维持人口中不可行或可行的解决方案。将这两种改进与DE算法结合在一起,该建议简称为rank-iMDDE。为了评估rank-iMDDE的性能,选择了CEC2006中提供的24个基准测试功能作为测试套件。此外,从文献中选择了五个广泛使用的约束工程基准问题和四个约束机械设计问题,以测试rank-iMDDE解决工程问题的能力。实验结果表明,rank-iMDDE能够在最终解决方案的质量,收敛速度和成功率方面提高DE的性能。此外,在基准功能和工程问题上,与其他最新的进化算法相比,它可以提供相当有竞争力的结果。

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