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Ground-borne vibration control in a building-like structure using multi-positive position feedback combined with sliding mode control

机译:利用多位置反馈与滑模控制相结合的类似建筑物的地面振动控制

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摘要

This work deals with the structural and dynamic analysis of a building-like structure consisting of a three-story building with one type of actuators, that is, a passive/active electromechanical actuator. The base of the structure is perturbed using an electromagnetic shaker, which provides forces with a wide range of excitation frequencies, including noisy excitations emulating traffic, underground railways and earthquakes, common in Mexico City. The overall mechanical structure is modeled using Euler-Lagrange method and validated using experimental modal analysis techniques. The active controls laws are synthesized to actively attenuate the noise and vibration system response caused by noise excitation forces acting on the base of the structure. The control scheme is obtained using multi-positive position feedback (MPPF) combined with sliding mode (SM) to improve the closed-loop system response, which is able to simultaneously attenuate the three vibration modes of the primary system. Some simulation and experimental results are included to illustrate the overall system performance. (C) 2016 Institute of Noise Control Engineering.
机译:这项工作处理的是由三层建筑组成的建筑物样结构的结构和动力分析,该建筑物具有一种类型的致动器,即被动/主动机电致动器。该结构的底部被电磁振动器所扰动,该振动器为力提供了广泛的激励频率,包括在墨西哥城常见的模拟交通,地下铁路和地震的噪声激励。使用Euler-Lagrange方法对整体机械结构进行建模,并使用实验模态分析技术对其进行验证。合成了主动控制定律以主动减弱由作用在结构基础上的噪声激励力引起的噪声和振动系统响应。该控制方案是使用多正位置反馈(MPPF)与滑模(SM)相结合来改善闭环系统响应而获得的,该系统能够同时衰减一次系统的三种振动模式。包括一些仿真和实验结果,以说明整体系统性能。 (C)2016噪声控制工程研究所。

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