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A comparative study on optimization of constrained layer damping treatment for structural vibration control

机译:结构振动控制中约束层阻尼处理优化的比较研究

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摘要

This paper presents a comparison of optimization algorithms for constrained layer damping (CLD) patches' layout with an objective to minimize the maximum vibration response of the odd modes, which constitutes the dominant acoustic radiation, of a simply supported beam excited by a harmonic transverse force. An analytical model developed for relating the displacement response of the beam with bonded CLD patches and their layout is adopted to formulate the optimization problem. Four different nonlinear optimization methods/algorithms, sub-problem approximation method, the first-order method, sequential quadratic programming (SQP) and genetic algorithm (GA), are then, respectively, used to optimize the CLD patches' locations and lengths with the aim of minimum displacement amplitude at the middle beam. The efficiency of each considered optimization method is evaluated and also compared in terms of obtained optimal beam displacement and the added weight owing to damping treatment. The results show that GA is most efficient in obtaining the best optimum for this optimization problem in spite of highest computation efforts required to improve its stability.
机译:本文对约束层阻尼(CLD)贴片布局的优化算法进行了比较,其目的是最小化由谐波横向力激发的简单支撑梁的奇数模(构成主要声辐射)的最大振动响应。建立了解析模型,用于将梁的位移响应与键合的CLD贴片及其布局相关联,以提出优化问题。然后分别使用四种不同的非线性优化方法/算法,子问题逼近方法,一阶方法,顺序二次规划(SQP)和遗传算法(GA)来优化CLD补丁的位置和长度。目标在中梁的最小位移幅度。评估每种考虑的优化方法的效率,并根据获得的最佳梁位移和由于阻尼处理而增加的重量进行比较。结果表明,尽管需要花费大量的计算工作来提高稳定性,但GA仍能最有效地获得针对此优化问题的最佳最优值。

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