一种压电摩擦阻尼器的半主动控制研究
[Abstract]:The vibration control methods of the structure can be divided into passive control, semi-active control, active control and hybrid control. In recent years, intelligent control is the leading technology of international vibration control research. Piezoelectric friction damper made of piezoelectric materials is a kind of intelligent control device. In this paper, a piezoelectric friction damper is proposed based on the inverse piezoelectric effect of piezoelectric material and the equivalent spring stiffness theory. The control effect of the damper is numerically simulated by semi-active control algorithm. The main contents are as follows: 1) by studying the physical and mechanical properties of piezoelectric materials, a numerical model is established by using finite element software, and the results are compared with the performance of piezoelectric materials in order to verify the correctness of the numerical model. Through the Python secondary development interface of ABAQUS software, the program script is written to realize the duplication of stack chips. The preprocessing operation of stacking chip loading voltage and material attribute. 2) theoretical analysis of the piezoelectric friction damper designed by using the equivalent spring stiffness theory; The energy input and mechanical energy output principle are used to optimize the shell size of the damper. Through numerical simulation, the curves of the relationship between force and displacement of dampers with different loading voltages under harmonic displacement regime are obtained. 3) genetic algorithm is used to optimize the QR weight matrix of the LQR control algorithm, and the displacement of the structure is obtained. The acceleration and damping force of the damper are used as the reference target to establish the fitness function. After the optimal selection and the artificial trial calculation, the structure control effect is compared between the two conditions, which are formed by the QR weight matrix, and it is concluded that the optimized control function has a better control effect on the structure. The feasibility of genetic algorithm for searching global optimal response value is verified. 4) an improved Bang-Bang control strategy is proposed to control the input voltage of piezoelectric friction damper. The piezoelectric friction damper can control the floor displacement and the acceleration of the structure. Numerical simulation shows that the piezoelectric friction damper can control a three-story steel frame structure under the improved control strategy. The results show that the piezoelectric friction damper has a better control effect on the floor displacement and acceleration of the structure.
【学位授予单位】:北京交通大学
【学位级别】:硕士
【学位授予年份】:2017
【分类号】:TU352.1
【参考文献】
相关期刊论文 前10条
1 王社良;刘敏;樊禹江;;新型压电陶瓷驱动器的特性分析[J];材料导报;2012年22期
2 马宁;吴斌;欧进萍;;一字形内芯全钢防屈曲支撑设计方法[J];工程力学;2012年10期
3 赵大海;李宏男;;模型结构的压电摩擦阻尼减振控制试验研究[J];振动与冲击;2011年06期
4 郭一峰;徐赵东;涂青;冉成崧;;基于遗传算法的LQR算法中权矩阵的优化分析[J];振动与冲击;2010年11期
5 赵大海;李宏男;;压电摩擦阻尼器的试验研究[J];压电与声光;2009年01期
6 丁海港;赵继云;张德生;;基于LQR的小车-倒摆闭环控制系统研究[J];煤矿机械;2008年11期
7 郭军慧;周岱;李磊;黄剑伟;;空间网壳结构振动问题的改进神经网络控制[J];工程力学;2008年10期
8 谢丽蓉;李伟;;线性二次型最优控制在倒立摆系统中的应用[J];重庆工学院学报(自然科学版);2008年08期
9 颜桂云;孙炳楠;;高层建筑横风向反应的模糊神经网络控制[J];地震工程与工程振动;2007年06期
10 贝伟明;李宏男;;采用磁流变阻尼器的地震结构模糊控制[J];自然灾害学报;2006年04期
相关博士学位论文 前4条
1 赵大海;基于压电摩擦阻尼器的结构振动控制理论与试验研究[D];大连理工大学;2008年
2 向宏军;功能梯度压电智能梁的特性分析及其应用[D];北京交通大学;2007年
3 刘国君;迭片式系列微型压电泵的设计理论及实验研究[D];吉林大学;2006年
4 阎石;结构振动智能控制的人工神经网络与模糊逻辑方法研究[D];大连理工大学;2000年
相关硕士学位论文 前4条
1 张仁猛;新型压电摩擦阻尼器的有限元分析及试验研究[D];西安建筑科技大学;2014年
2 张珍珍;半主动减震结构实时控制的试验研究[D];北京交通大学;2008年
3 李军;智能压电摩擦阻尼器的控制理论与试验研究[D];大连理工大学;2005年
4 何晴光;万向型压电摩擦阻尼器及其在高层建筑减振控制中的应用[D];兰州理工大学;2004年
,本文编号:2347828
本文链接:https://www.wllwen.com/jianzhugongchenglunwen/2347828.html