Active control strategy for low frequency vibration of space flexible cables based on improved sliding mode controller

IF 2.8 4区 工程技术 Q1 ACOUSTICS
Yutong Dong, Wenhao Wang, Guanlong Su, Lei Liu
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引用次数: 0

Abstract

Effective vibration control of flexible cables is increasingly demanded for space flexible structure. For the low frequency dynamics of flexible cables, a novel vibration control strategy based on sliding mode control is proposed in this paper. First, the complex dynamical behavior of flexible cables is modeled using D’Alembert’s principle. Second, an improved dual power reaching law is put forward to better address the chattering problem of the sliding mode controller. Then, an extended state observer (ESO) with the radial basis function (RBF) neural network is designed to compensate for internal uncertainties and external disturbances as well as further improve the control accuracy. Lyapunov function is employed to analyze the stability of the system. Finally, considering the large number of parameters of the proposed controller, an improved particle swarm optimization (PSO) algorithm is designed to automatically adjust these parameters. The effectiveness of the proposed method is demonstrated by simulation results.
基于改进滑模控制器的空间柔性索低频振动主动控制策略
空间柔性结构对柔性索的有效振动控制提出了越来越高的要求。针对柔性索的低频动态特性,提出了一种基于滑模控制的柔性索振动控制策略。首先,利用达朗贝尔原理对柔性索的复杂动力特性进行了建模。其次,提出一种改进的双功率逼近律,以更好地解决滑模控制器的抖振问题。然后,利用径向基函数(RBF)神经网络设计了一种扩展状态观测器(ESO),以补偿内部不确定性和外部干扰,进一步提高控制精度。采用Lyapunov函数分析系统的稳定性。最后,针对所提控制器参数较多的问题,设计了一种改进的粒子群优化算法(PSO)来自动调整这些参数。仿真结果验证了该方法的有效性。
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来源期刊
CiteScore
4.90
自引率
4.30%
发文量
98
审稿时长
15 weeks
期刊介绍: Journal of Low Frequency Noise, Vibration & Active Control is a peer-reviewed, open access journal, bringing together material which otherwise would be scattered. The journal is the cornerstone of the creation of a unified corpus of knowledge on the subject.
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