Semi-active vibration control via a magnetorheological damper and active disturbance rejection control

磁流变阻尼器 磁流变液 自抗扰控制 阻尼器 控制理论(社会学) 振动 扰动(地质) 振动控制 主动振动控制 控制(管理) 结构工程 工程类 计算机科学 物理 非线性系统 地质学 声学 古生物学 量子力学 人工智能 国家观察员
作者
Andrés Rodríguez-Torres,Jesús Morales‐Valdez,Wen Yu
出处
期刊:Transactions of the Institute of Measurement and Control [SAGE Publishing]
标识
DOI:10.1177/01423312241276074
摘要

This work provides an alternative for the semi-active vibration control problem via state feedback plus an active disturbance rejection control (K-ADRC) for a multistory building structure equipped with one magnetorheological damper (MRD) located between the ground and the first story. This control law introduces a disturbance observer (DOB) to estimate the total disturbance in real time, produced by the earthquake perturbation, unmodeled dynamics, and parametric uncertainties, and then cancel their effect using a part of the control signal. Moreover, using a diffeomorphism, the K-ADRC provides a proportional derivative (PD) controller designed to improve internal stability. A prominent feature of the active disturbance rejection control (ADRC) algorithm is that the value of the DOB gain is selected according to the system bandwidth. The stability of the system is verified via Lyapunov analysis. Moreover, the building structure model and the MRD are accomplished by incorporating a nonlinearity state that represents the hysteresis effect to perform real behavior in addition to assuming that acceleration is the only available measurement of building structures. Thus, integral filters are provided based on the appropriate cut-off frequency to estimate displacement and velocity, avoiding bias, offset, and phase shifts. Experimental results from a reduced-scale two-story building prototype demonstrate that the proposed K-ADRC is promising for real applications, and it has better performance than the state feedback (K) and the linear quadratic regulator (LQR) control techniques.
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