基于改进二元差分进化算法的工程优化

Chun-Yin Wu, K. Tseng
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引用次数: 4

摘要

差分进化(DE)是一种启发式优化方法,用于解决实值搜索空间中的许多优化问题。它的优点是结合了一种相对简单和有效的突变和交叉形式。然而,DE的运算符主要仅基于浮点表示,难以应用于基于二进制的优化问题。本文提出了一种基于逻辑运算的改进的二元差分进化算法,该算法具有一种简单的、新的二元变异机制。所提出的二元突变策略适用于离散化和参数化工程优化问题。通过热粘接器形状优化设计和结构拓扑优化两个不同类型的工程问题,说明了该算法在工程优化中的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering Optimization Using Modified Binary Differential Evolution Algorithm
Differential evolution (DE) is a heuristic optimization method used to solve many optimization problems in real-valued search space. It has the advantage of incorporating a relatively simple and efficient form of mutation and crossover. However, the operator of DE is primarily based on floating-point representation only and is difficult to apply to binary-based optimization problems. In this paper, a modified binary differential evolution with a simple and new binary mutation mechanism based on a logical operation is proposed. The developed binary mutation strategy is suitable for dealing with discrete and parametric engineering optimization problems. Two different types of engineering problems consisting of optimal shape design of heat bonder and topology optimization of structure are used to illustrate the high viability of the proposed algorithm in engineering optimization.
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