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作 者:邢峰[1]
机构地区:[1]重庆工商职业学院汽车工程学院,重庆401520
出 处:《农业工程学报》2015年第20期62-67,共6页Transactions of the Chinese Society of Agricultural Engineering
基 金:重庆市教委科学技术研究项目(KJ111602)
摘 要:针对大型、非线性结构的振动抑制问题,提出基于在线系统辨识的小波自适应控制策略,进行车身结构振动主动控制。通过小波自适应控制策略分析、车身结构模态分析和数学模型拟合,搭建了基于并行在线系统辨识的小波自适应控制系统,应用压电智能元件作为传感器和控制器,搭建了车身结构振动控制试验平台。通过小波自适应控制,车身壁板振动幅值减小60%左右,特别是被动控制效果较差的低频区域,壁板振动幅值约减小40%~80%。试验结果表明,该文所建立的在线系统辨识小波自适应控制系统,对于轿车车身这样大型的非线性结构在时变、不确定激励下的振动,能够取得良好控制效果,为解决各类工程机械减振降噪问题提供参考。Aiming at the problem of vibration suppression to large and nonlinear structures, the control strategy of adaptive wavelet algorithm was proposed based on on-line system identification method. Combining the wavelets and least mean square(LMS) algorithm, this paper focused on adaptive vibration control to body structure by using decomposition LMS algorithm. Experiments research on active vibration control was carried out with the piezoelectric elements as sensors and actuators. Firstly, adaptive LMS wavelet control strategy was analyzed and adopted. Input signals were decomposed into a series of different frequency bands through a set of band pass filters. By using LMS algorithm to deal with each component of frequency bands, parameter matrix equation of the adaptive controller was obtained. Secondly, experimental modal analysis and system identification of the car body were carried out, and the mathematical model of the system was obtained by experimental method. A car body was hung on the bracket, and it was arranged with 106 test points. In the center of the wheel, a vibration exciter was arranged at the selected frequency to stimulate the car body to vibrate. Vibration signals to each measuring point were digitized by data acquisition and analysis system. Modal parameters and frequency response function of the structure were obtained through parameter identification. Using the modal analysis software, the experimental function curves were fitted to the modal vibration mode. According to the input and output to the measuring points, the system identification toolbox of MATLAB was used to obtain the structural parameters matrix, and to establish the mathematical model of the body structure. The mathematical model would be used for vibration control experiments as the control object in the adaptive wavelet control system. Thirdly, parallel on-line system identification method was applied. Another adaptive digital filter was introduced into the traditional system identification method, and the two filters were
关 键 词:振动 算法 控制系统 小波自适应 在线系统辨识 主动控制
分 类 号:TB114.2[理学—运筹学与控制论]
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