节点文献
进给机构磁悬浮系统的解耦控制分析
Decoupling control of a maglev feeding mechanism
【摘要】 进给机构的磁悬浮系统由于结构的特点在进给运动中存在着水平y方向及垂直z方向的磁力和位移耦合现象.为此,分析推导了该磁悬浮系统的动力学方程,建立了相应的磁悬浮控制系统的状态方程.理论分析计算及仿真结果表明:通过采用状态反馈结合输入变换,可以使原来包含着变量间耦合的复杂控制系统实现解耦控制,简化了磁悬浮系统的控制过程,有利于提高进给机构运动的平稳性和定位精度.
【Abstract】 There are magnetic force coupling and displacement coupling on both horizontal y - axes and vertical z - axes in a magnetic levitation (maglev) system, when the feeding mechanism moves. Dynamics analysis of the maglev system is run. A correlative dynamics equation and a state equation of control system are established. The equations indicate that the control system is a coupling system. After theoretical analyzing and simulated experiment, the result shows that the complicated coupling control system can be transformed to an easy decoupling control system after applying state feedback and input transformation. This will predigest the control process and be useful to improve the stability and precession accuracy to the feeding mechanism.
【Key words】 magnetic levitation(maglev); feeding mechanism; coupling; state feedback; decoupling control;
- 【文献出处】 哈尔滨工业大学学报 ,Journal of Harbin Institute of Technology , 编辑部邮箱 ,2005年03期
- 【分类号】TN405
- 【被引频次】2
- 【下载频次】126