Linear quadratic AMD controller with an observer for buildings under seismic ground motion

L. Guenfaf, S. Allaoua
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引用次数: 4

Abstract

This paper is devoted to the study of active control with an observer for the control of structural vibration using an electric servomotor active mass driver (AMD) system. Composed primarily of an electric servomotor and a ball screw, the electrical AMD system is free from noise problems, oil leakage, and labor-intensive maintenance that commonly are associated with hydraulic AMD systems. For technological reasons and for cost reasons the number of sensors is limited by using the Luenberger observer. This observer is based on the synthesis of a static gain to stabilize the error state estimation and the convergence of the observer status to the state of the real system. In this study an instantaneous linear quadratic control algorithm is adopted using an observer. Numerical simulation is performed using a single sensor on the top floor of a five-story steel frame structure under the conditions of a Kanai-Tajimi power spectral density function of ground acceleration.
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地震动作用下建筑物带观测器的线性二次型AMD控制器
本文研究了带观测器的结构振动主动控制方法,并利用电动伺服电机主动质量驱动器(AMD)系统进行结构振动控制。主要由电动伺服电机和滚珠丝杠组成,电动AMD系统没有噪音问题,漏油问题,以及通常与液压AMD系统相关的劳动密集型维护。由于技术原因和成本原因,传感器的数量受到使用Luenberger观测器的限制。该观测器是基于静态增益的综合,以稳定误差状态估计和观测器状态收敛到实际系统状态。本研究采用了一种带观测器的瞬时线性二次控制算法。在地面加速度的Kanai-Tajimi功率谱密度函数条件下,利用五层钢框架结构顶层的单传感器进行了数值模拟。
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