引用本文:段学超,仇原鹰.柔性支撑Stewart平台自适应交互PID隔振控制[J].控制理论与应用,2009,26(6):607~612.[点击复制]
DUAN Xue-chao,QIU Yuan-ying.Vibration isolation of the flexibly supported Stewart platform using adaptive interactive PID control[J].Control Theory and Technology,2009,26(6):607~612.[点击复制]
柔性支撑Stewart平台自适应交互PID隔振控制
Vibration isolation of the flexibly supported Stewart platform using adaptive interactive PID control
摘要点击 1506  全文点击 1599  投稿时间:2007-10-12  修订日期:2009-01-04
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DOI编号  10.7641/j.issn.1000-8152.2009.6.004
  2009,26(6):607-612
中文关键词  大射电望远镜  Stewart平台  柔性支撑  隔振控制  自适应交互PID
英文关键词  large radio telescope  Stewart platform  flexibly supported  vibration isolation  adaptive interactive PID
基金项目  国家自然科学基金重点资助项目(10433020); 教育部留学回国人员实验室基金资助项目(030401).
作者单位E-mail
段学超 西安电子科技大学 电子装备结构教育部重点实验室, 陕西 西安 710071 xchduan@xidian.edu.cn 
仇原鹰 西安电子科技大学 电子装备结构教育部重点实验室, 陕西 西安 710071 yyqiu@mail.xidian.edu.cn 
中文摘要
      为了实现500 m口径球面射电望远镜(five hundred meter aperture spherical radio telescope, FAST)二级精调稳定平台对馈源舱隔振控制的定位和指向精度, 首先提出了基于并联机构学原理的3维机动目标跟踪预测算法, 对柔性支撑Stewart平台的基座运动进行跟踪预测. 进而,在Stewart平台关节空间设计了自适应交互PID控制器, 引入自适应交互算法解决PID参数的实时调整, 以适应柔性支撑Stewart平台的参数变化对不同控制参数的需求. 采用现代机电系统仿真策略, 对柔性支撑Stewart平台隔振系统的动力学与控制问题进行了仿真, 结果表明: 与传统的PID控制器相比, 自适应交互PID控制器大大改善了隔振效果, 完全满足隔振目标的要求.
英文摘要
      To achieve the required precision in position and orientation for the feeding platform of a 500m aperture spherical radio telescope(FAST), we employ a tracking-prediction control based on the kinematics theory of parallel mechanisms to track and predict the motion of the flexibly supported base of the Stewart platform. Adaptive interactive PID controllers, which utilize the adaptive interactive algorithm to adjust the parameters of the conventional PID controller, are developed for controlling the joint space of the Stewart platform. Based on the modern mechatronic system simulation strategy, the simulation of the dynamics and control of the vibration isolation system in a flexibly supported Stewart platform vibration is conducted. The results show that the adaptive interactive PID controller has superior effects in vibration isolation control over the canonical PID controllers, and satisfy the specifications for the vibration isolation control.