Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems

Technique of feedforward and feedback optimal vibration control and simulation for long-span cable-bridge coupled systems is developed. Buffeting loading systems of long-span cable-bridge structure are constructed by weighted amplitude wave superposition method. Nonlinear model of cable-bridge coupl...

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Main Authors: Yan-Jun Liang, Shi-Liang Wu, De-Xin Gao, Xiao-Rong Xue
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Abstract and Applied Analysis
Online Access:http://dx.doi.org/10.1155/2014/513530
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author Yan-Jun Liang
Shi-Liang Wu
De-Xin Gao
Xiao-Rong Xue
author_facet Yan-Jun Liang
Shi-Liang Wu
De-Xin Gao
Xiao-Rong Xue
author_sort Yan-Jun Liang
collection DOAJ
description Technique of feedforward and feedback optimal vibration control and simulation for long-span cable-bridge coupled systems is developed. Buffeting loading systems of long-span cable-bridge structure are constructed by weighted amplitude wave superposition method. Nonlinear model of cable-bridge coupled vibration control system is established and the corresponding system of state space form is described. In order to reduce buffeting loading influence of the wind-induced vibration for the structure and improve the robust performance of the vibration control, based on semiactive vibration control devices and optimal control approach, a feedforward and feedback optimal vibration controller is designed, and an algorithm is presented for the vibration controller. Numerical simulation results are presented to illustrate the effectiveness of the proposed technique.
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institution Kabale University
issn 1085-3375
1687-0409
language English
publishDate 2014-01-01
publisher Wiley
record_format Article
series Abstract and Applied Analysis
spelling doaj-art-4ead7eec08564f9b85671e6dc8626d3f2025-02-03T01:10:11ZengWileyAbstract and Applied Analysis1085-33751687-04092014-01-01201410.1155/2014/513530513530Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear SystemsYan-Jun Liang0Shi-Liang Wu1De-Xin Gao2Xiao-Rong Xue3School of Computer and Information Engineering, Anyang Normal University, Anyang 455000, ChinaSchool of Mathematics and Statistics, Anyang Normal University, Anyang 455000, ChinaCollege of Automation and Electronic Engineering, Qingdao University of Science and Technology, Qingdao 266042, ChinaSchool of Computer and Information Engineering, Anyang Normal University, Anyang 455000, ChinaTechnique of feedforward and feedback optimal vibration control and simulation for long-span cable-bridge coupled systems is developed. Buffeting loading systems of long-span cable-bridge structure are constructed by weighted amplitude wave superposition method. Nonlinear model of cable-bridge coupled vibration control system is established and the corresponding system of state space form is described. In order to reduce buffeting loading influence of the wind-induced vibration for the structure and improve the robust performance of the vibration control, based on semiactive vibration control devices and optimal control approach, a feedforward and feedback optimal vibration controller is designed, and an algorithm is presented for the vibration controller. Numerical simulation results are presented to illustrate the effectiveness of the proposed technique.http://dx.doi.org/10.1155/2014/513530
spellingShingle Yan-Jun Liang
Shi-Liang Wu
De-Xin Gao
Xiao-Rong Xue
Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
Abstract and Applied Analysis
title Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
title_full Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
title_fullStr Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
title_full_unstemmed Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
title_short Feedforward and Feedback Vibration Control and Algorithm Design for Cable-Bridge Structure Nonlinear Systems
title_sort feedforward and feedback vibration control and algorithm design for cable bridge structure nonlinear systems
url http://dx.doi.org/10.1155/2014/513530
work_keys_str_mv AT yanjunliang feedforwardandfeedbackvibrationcontrolandalgorithmdesignforcablebridgestructurenonlinearsystems
AT shiliangwu feedforwardandfeedbackvibrationcontrolandalgorithmdesignforcablebridgestructurenonlinearsystems
AT dexingao feedforwardandfeedbackvibrationcontrolandalgorithmdesignforcablebridgestructurenonlinearsystems
AT xiaorongxue feedforwardandfeedbackvibrationcontrolandalgorithmdesignforcablebridgestructurenonlinearsystems