Model reference adaptive hierarchical control framework for shake table tests

IF 4.3 2区 工程技术 Q1 ENGINEERING, CIVIL Earthquake Engineering & Structural Dynamics Pub Date : 2024-10-24 DOI:10.1002/eqe.4256
Zhongwei Chen, T. Y. Yang, Yifei Xiao, Xiao Pan, Wanyan Yang
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Abstract

The structural response under earthquake excitation can be simulated by shake table tests. However, the performance of the shake table is affected by the Control-Structure Interaction (CSI) effect. In recent years, nonlinear control algorithms were developed to compensate for the CSI effect. In this study, a model reference adaptive control algorithm, named model reference adaptive hierarchical control (MRAHC) framework, is presented. MRAHC consists of a high (adaptive) and low (loop-shaping) level controller. The high-level (adaptive) controller develops the control algorithm on the system level, which directedly considers the inherent nonlinearity of the test specimen and the CSI effect. While the low-level (loop-shaping) controller develops the control algorithm to regulate the hydraulic system and make sure it can follow the reference signal generated by the high-level (adaptive) controller. MRAHC offers many advantages including direct compensation to the structural nonlinearity and the ability to handle the CSI effect. In addition, it allows users to quantify the mass of the test specimens without measurement. To evaluate the performance of the MRAHC method, shake table tests with different upper structure masses were carried out. The performance of the MRAHC was compared with the direct loop-shaping control method (LC) and the Proportional-Integral-Differentiation control method (PID). The results show that the MRAHC can achieve better acceleration tracking compared to the LC and PID control methods. Hence, the MRAHC can be used as an effective nonlinear controller for shake table tests.

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振动台试验的模型参考自适应分层控制框架
振动台试验可以模拟结构在地震作用下的响应。然而,振动台的性能受到控制-结构相互作用(CSI)效应的影响。近年来,人们发展了非线性控制算法来补偿CSI效应。本文提出了一种模型参考自适应控制算法——模型参考自适应分层控制框架(MRAHC)。MRAHC由高电平(自适应)和低电平(环整形)控制器组成。高级(自适应)控制器在系统级上发展控制算法,直接考虑了试件的固有非线性和CSI效应。低阶(环整形)控制器开发控制算法对液压系统进行调节,使其能够跟随高阶(自适应)控制器产生的参考信号。MRAHC具有直接补偿结构非线性和处理CSI效应的能力等优点。此外,它允许用户在不测量的情况下量化测试样品的质量。为了评价MRAHC方法的性能,进行了不同上部结构质量的振动台试验。并与直接环整形控制方法(LC)和比例-积分-微分控制方法(PID)进行了性能比较。结果表明,与LC和PID控制方法相比,MRAHC可以实现更好的加速度跟踪。因此,MRAHC可以作为振动台试验的有效非线性控制器。
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来源期刊
Earthquake Engineering & Structural Dynamics
Earthquake Engineering & Structural Dynamics 工程技术-工程:地质
CiteScore
7.20
自引率
13.30%
发文量
180
审稿时长
4.8 months
期刊介绍: Earthquake Engineering and Structural Dynamics provides a forum for the publication of papers on several aspects of engineering related to earthquakes. The problems in this field, and their solutions, are international in character and require knowledge of several traditional disciplines; the Journal will reflect this. Papers that may be relevant but do not emphasize earthquake engineering and related structural dynamics are not suitable for the Journal. Relevant topics include the following: ground motions for analysis and design geotechnical earthquake engineering probabilistic and deterministic methods of dynamic analysis experimental behaviour of structures seismic protective systems system identification risk assessment seismic code requirements methods for earthquake-resistant design and retrofit of structures.
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Issue information Issue information A codifiable methodology for estimating pallet sliding displacements on steel racking systems Model reference adaptive hierarchical control framework for shake table tests Sensitivity of seismic fragility curves to multiple parameters using CyberShake simulated ground motions
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