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A new meta-heuristic algorithm for continuous engineering optimization: harmony search theory and practice

机译:连续工程优化的新元启发式算法:和声搜索理论与实践

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摘要

Most engineering optimization algorithms are based on numerical linear and nonlinear programming methods that require substantial gradient information and usually seek to improve the solution in the neighborhood of a starting point. These algorithms, however, reveal a limited approach to complicated real-world optimization problems. If there is more than one local optimum in the problem, the result may depend on the selection of an initial point, and the obtained optimal solution may not necessarily be the global optimum. This paper describes a new harmony search (HS) meta-heuristic algorithm-based approach for engineering optimization problems with continuous design variables. This recently developed HS algorithm is conceptualized using the musical process of searching for a perfect state of harmony. It uses a stochastic random search instead of a gradient search so that derivative information is unnecessary. Various engineering optimization problems, including mathematical function minimization and structural engineering optimization problems, are presented to demonstrate the effectiveness and robustness of the HS algorithm. The results indicate that the proposed approach is a powerful search and optimization technique that may yield better solutions to engineering problems than those obtained using current algorithms.
机译:大多数工程优化算法都基于线性和非线性数值编程方法,这些方法需要大量的梯度信息,并且通常会寻求在起点附近改善解决方案。但是,这些算法揭示了解决复杂的现实世界优化问题的有限方法。如果问题中存在多个以上的局部最优,则结果可能取决于初始点的选择,并且获得的最优解可能不一定是全局最优。本文介绍了一种新的基于和声搜索(HS)元启发式算法的方法,用于具有连续设计变量的工程优化问题。这种新近开发的HS算法是通过音乐过程寻找完美的和谐状态而概念化的。它使用随机随机搜索代替梯度搜索,因此不需要导数信息。提出了各种工程优化问题,包括数学函数最小化和结构工程优化问题,以证明HS算法的有效性和鲁棒性。结果表明,所提出的方法是一种功能强大的搜索和优化技术,与使用当前算法获得的解决方案相比,它可以为工程问题提供更好的解决方案。

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