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Simultaneous topology optimization of supporting structure and loci of isolators in an active vibration isolation system

机译:主动隔振系统中隔离器支撑结构和轨迹的同时拓扑优化

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摘要

We developed a new multi-objective and multi-level optimization method to design an active vibration isolation system. Both the layout of the continuum (i.e. the supporting structure) and the loci of the isolators are designed using topology optimization technique in a unified formulation for the first time. The static, dynamic and vibration-isolation characteristics are taken into account simultaneously in the present model. Due to their different roles in the system it may be appropriate and advantageous to treat the design of the continuum layout and isolator loci as different sub-problems with different objectives in separate stages. The multi-level optimization technique, where the optimization of the supporting structure and the isolator loci are incorporated into a closed-loop, is proposed and implemented so that the interactions between these two sub-problems can be fully taken into account. Numerical results demonstrate the validity of the proposed design cycle. Comparisons show that the overall static, dynamic and vibration-isolation performance of the optimized system outperforms the ones designed by traditional methods. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们开发了一种新的多目标多级优化方法来设计主动隔振系统。连续体的布局(即支撑结构)和隔离器的位点都是首次使用拓扑优化技术以统一公式设计的。在本模型中同时考虑了静态,动态和隔振特性。由于它们在系统中的不同角色,将连续体布局和隔离器位点的设计视为在不同阶段具有不同目标的不同子问题可能是适当且有利的。提出并实施了多级优化技术,其中将支撑结构和隔离器位点的优化合并到一个闭环中,以便可以充分考虑这两个子问题之间的相互作用。数值结果证明了所提出设计周期的有效性。比较表明,优化系统的整体静态,动态和隔振性能优于传统方法设计的系统。 (C)2017 Elsevier Ltd.保留所有权利。

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