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Parameter configuration of composite vibration isolation system using power flow and MOPSO technique

机译:基于潮流和MOPSO技术的复合隔振系统参数配置

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摘要

Traditional vibration isolation design often aims to suppress vibrations from machinery equipment, while vibrations in the foundation are usually ignored. In this paper, the "machinery equipment single-stage (double-stage) isolators-thin plate foundation" is considered as a composite vibration isolation system, with equipment deployed at four positions on the plate. The forces transmitted from the equipment to the foundation were derived using a mechanical four-pole connection principle, and the displacement admittance of the junctions between the equipment and the plate was used as the key intermediate variable. Multi-objective optimization for the proposed system was subsequently performed, using fitness functions to reduce the maximum power flow transmitted to the plate and ensure a uniform vibration of the machinery equipment. A multi-objective particle swarm optimization (MOPSO) algorithm was used as the optimization tool which offers the advantages of fewer parameter settings, fast convergence, a strong optimization capability, and possession of a unique, global and optimal solution (gbest solution) based on Pareto dominance. The power flow that induced plate vibrations from the machinery isolation system was introduced in this study, which was used to consider the transmitted force and velocity on the plate simultaneously. An advanced theory of clamped plate vibration aptly supported this strategy, and inspiration was also provided by an innovative optimization strategy based on artificial intelligence.
机译:传统的隔振设计通常旨在抑制机械设备的振动,而通常会忽略基础中的振动。在本文中,“机械设备单级(双级)隔离器-薄板基础”被认为是一种复合振动隔离系统,设备部署在板上的四个位置。从设备传递到基础的力是根据机械的四极连接原理得出的,设备与平板之间的连接处的位移导纳被用作关键的中间变量。随后使用适应度函数对建议的系统进行多目标优化,以减少传递到平板的最大功率流并确保机械设备的均匀振动。使用多目标粒子群算法(MOPSO)作为优化工具,它具有以下优点:参数设置更少,收敛速度快,优化能力强,并且具有基于以下特征的唯一,全局和最优解(最佳解)帕累托优势。引入了由机械隔离系统引起的板振动的功率流,该功率流被用于同时考虑板上的传递力和速度。先进的夹板振动理论适当地支持了该策略,并且基于人工智能的创新性优化策略也为我们提供了灵感。

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