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MULTI-OBJECTIVE OPTIMIZATION OF PARAMETERS AND LOCATION OF PASSIVE VIBRATION ISOLATION SYSTEM EXCITED BY CLAMPED THIN PLATE FOUNDATION

机译:夹层薄板基础激励的多目标参数优化和无源隔振系统的位置

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摘要

This paper reports a novel optimization strategy combined with artificial intelligence for parameters and location design of precision equipment and provides a broader view for traditional passive vibration isolation. It also considers "precision equipment-vibration isolators-thin plate foundation" as a composite passive vibration isolation system and the clamped thin plate. The vibration isolation system is considered as four-point support, and the displacement amplitude transmissibility from the thin plate to precision equipment is derived and based on the analysis of influencing factors of transmissibility; subsequently, multi-objective optimization of the composite system is performed. A novel swarm intelligence multi-objective optimization method-a multi-objective particle swarm optimization (MOPSO) algorithm is adopted in this paper which can achieve a global optimal solution and by selecting the desired solution from an equivalence relation, the whole Pareto set can be avoided. The maximum and variance of the four transmitted peak displacements are simultaneously considered as fitness functions, and the purpose is to reduce the amplitude of the multi-peak isolation system, and in the meantime, to allow the plate to be uniformly vibrated as far as possible. Moreover, the presented idea is validated numerically, and the location research of the precision equipment mounted on the plate is also conducted.
机译:本文报告了一种结合人工智能技术的新型优化策略,用于精密设备的参数和位置设计,并为传统的被动隔振提供了广阔的视野。它还将“精密设备-振动隔离器-薄板基础”视为复合被动隔振系统和夹紧的薄板。隔振系统被认为是四点支撑,并基于对传递系数影响因素的分析,推导了从薄板到精密设备的位移振幅传递系数。随后,对复合系统进行多目标优化。本文采用了一种新型的群体智能多目标优化方法-多目标粒子群算法(MOPSO),该算法可以实现全局最优解,并通过等价关系选择期望的解,从而可以求解整个帕累托集。避免。同时将四个透射峰位移的最大值和方差视为适应度函数,其目的是减小多峰隔离系统的振幅,同时使板尽可能均匀地振动。 。此外,对所提出的想法进行了数值验证,并对安装在板上的精密设备进行了定位研究。

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