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Hybridized optimization algorithms for design of trusses with multiple natural frequency constraints

机译:具有多种固有频率约束的桁架设计的混合优化算法

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In this paper, two optimization algorithms are applied for finding the optimal mass of truss structures with natural frequency constraints. The Particle Swarm Optimization with an Aging Leader and Challengers (ALC-PSO) algorithm is the first technique which applies the aging mechanism to particle swarm optimization (PSO) algorithm. The second method is HALC-PSO that transplants harmony search-based mechanism to ALC-PSO as a variable constraint handling approach. In these methods, the leader of the swarm ages and has a limited lifespan which is adaptively tuned according to the leader's leading power. If a leader shows a strong ability to lead the swarm toward better positions, its lifespan is increased, otherwise the leader gets aged quickly and when its lifespan is exhausted, a new particle emerges to challenge and claim the leadership. Therefore, premature convergence can be prevented in these methods. Five well-known truss mass optimization examples on Layout and size with frequency constraints are presented to demonstrate the viability of the algorithms. This type of problem is highly non-linear and non-convex dynamic optimization problems since mass reduction conflicts with the frequency constraints, especially when they are lower bounded. Numerical results show the robustness and high performance of the ALC-PSO and HALC-PSO algorithms for structural optimization problems with frequency constraints. It is found that the best results are obtained using HALC-PSO algorithm in most of the cases.
机译:本文采用两种优化算法来寻找具有固有频率约束的桁架结构的最佳质量。具有老化领导者和挑战者的粒子群优化算法(ALC-PSO)是将老化机制应用于粒子群优化(PSO)算法的第一项技术。第二种方法是HALC-PSO,它将基于和声搜索的机制移植到ALC-PSO中,作为可变约束处理方法。在这些方法中,蜂群的首领会老化并具有有限的寿命,生命周期会根据首领的领导力进行自适应调整。如果领导者表现出强大的领导能力,可以将其带到更好的位置,则寿命会延长,否则,领导者会很快衰老,并且当其寿命耗尽时,就会出现新的粒子来挑战并要求领导权。因此,可以防止这些方法过早收敛。给出了五个关于频率约束的布局和尺寸的著名桁架质量优化示例,以证明算法的可行性。这种类型的问题是高度非线性和非凸动态优化问题,因为质量降低与频率约束冲突,尤其是在它们的下界时。数值结果表明,ALC-PSO和HALC-PSO算法对于具有频率约束的结构优化问题具有鲁棒性和高性能。发现在大多数情况下,使用HALC-PSO算法可获得最佳结果。

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