吉林大学学报(工学版) ›› 2013, Vol. 43 ›› Issue (05): 1241-1246.doi: 10.7964/jdxbgxb201305015

• 论文 • 上一篇    下一篇

基于旋转矩阵正交性的转向架6自由度平台位姿正解解算

王秀刚, 苏建, 曹晓宁, 徐振, 卢海隔, 田宗举   

  1. 吉林大学 交通学院, 长春 130022
  • 收稿日期:2012-05-14 出版日期:2013-09-01 发布日期:2013-09-01
  • 通讯作者: 苏建(1954- ),男,教授,博士生导师.研究方向:轨道车辆工程,车辆智能检测与诊断.E-mail:sujianjd@163.com E-mail:sujianjd@163.com
  • 作者简介:王秀刚(1986- ),男,博士研究生.研究方向:轨道车辆工程,车辆智能检测与诊断.E-mail:wangxiugang0504@163.com
  • 基金资助:

    吉林省科技厅重点项目(20080356);长春市科技支撑计划项目(2010018);吉林大学研究生创新基金项目(20121091,20121076);吉林大学青年科技创新基金项目(450060487415).

Forward kinematics solution of bogie 6-DOF platform based on the orthogonality of rotation matrix

WANG Xiu-gang, SU Jian, CAO Xiao-ning, XU Zhen, LU Hai-ge, TIAN Zong-ju   

  1. College of Transportation, Jilin University, Changchun 130022, China
  • Received:2012-05-14 Online:2013-09-01 Published:2013-09-01

摘要:

利用齐次变换矩阵中旋转矩阵的正交特性及牛顿迭代实现了转向架空间姿态模拟平台的运动学正解解算。根据旋转矩阵元素之间的正交关系及各液压缸杆长约束条件,建立了以齐次变换矩阵各元素为未知量、方程数等于未知量数的非线性方程组的数学模型,并运用牛顿拉夫逊法进行近似求解,再根据齐次变换矩阵元素与位姿变量对应函数关系求解相应位姿,避免了牛顿拉夫逊法算法迭代求解过程中三角函数反复运算,提高了位姿正解解算速度。本文研究的转向架6自由度平台位姿正解解算方法为转向架空间姿态模拟的实现提供了依据,同时为其余形式的6自由度平台位姿解算提供了理论基础和技术支持。

关键词: 铁路运输, 空间姿态模拟平台, 位姿正解, 齐次变换矩阵, 牛顿迭代

Abstract:

The paper employed the orthogonality of rotation matrix of homogeneous transfer matrix and Newton iteration to obtain the solution of forward kinematics of the space attitude simulation bogie. First, according to the orthogonal relationship between the elements of the rotation matrix and the length constraints of the hydraulic cylinder rods, the mathematical model with nonlinear equations was established. In this model, the elements of the homogeneous transformation matrix were taken as the unknowns, and the number of equations was equal to the number of the unknowns. Then, the approximate solution was obtained with Newton-Raphson method. Finally, the corresponding position and pose were solved on the basis of the relationship between the elements of the homogeneous transformation matrix and the position variables. The method avoids the iterative calculation of trigonometric function with Newton-Raphson method, improving the speed to solve the forward kinematics. Also, the method of forward kinematics of the bogie 6-DOF platform provides the possibility of realizing the space attitude simulation of bogie. It provides the theoretical basis and technical support for the pose solution of other forms of 6-DOF platform.

Key words: railway transportation, space attitude simulation platform, forward kinematics, homogeneous transfer matrix, Newton iteration

中图分类号: 

  • U260

[1] 池茂儒,张卫华,曾京,等.高速客车转向架悬挂参数分析[J].大连交通大学学报,2007,28(3):13-19. Chi Mao-ru, Zhang Wei-hua, Zeng Jing, et al. Study of suspension parameter of high speed passenger car bogies[J].Journal of Dalian Jiaotong University, 2007,28(3):13-19.

[2] Zhou Hui, Cao Yi, Zhang Qiu-ju.The research on direct kinematic problem of a special class of the stewart-gough manipulators[C]//Proceedings of 2008 IEEE International Conference on Mechatronics and Automation, Takamatsu,USA,2008.

[3] 车林仙,何兵,易建,等.对称结构Stewart机构位置正解的改进粒子群算法[J].农业机械学报,2008,39(10):158-163. Che Lin-xian, He Bing, Yi Jian, et al. Improved particle swarm optimization for forward positional analysis of symmetrical stewart parallel manipulators[J]. Transactions of the Chinese Society for Agriculture Machinery, 2008, 39(10): 158-163.

[4] 李立,张剑,陈永,等.同伦迭代法的研究及其应用于机构学问题的求解[J].西南交通大学学报:自然科学版,2000,35(1):57-60. Li Li, Zhang Jian, Chen Yong, et al. On the homotopy iteration method and its application in the mechanism problems[J]. Journal of Southwest Jiao tong University, 2000,35(1):57-60.

[5] Boudreau Roger, Turkkan Noyan. Solving the forward kinematics of parallel manipulators with a genetic algorithm[J]. Journal of Robotic Systems, 1996, 13(2): 111-125.

[6] Ghasemi Ali, Eghtesad Mohammad, Farid Mehrdad. Neural network solution for forward kinematics problem of cable robots[J]. Journal of Intelligent and Robotic Systems,2010, 60(2): 201-215.

[7] Yang Chi-fu, Huang Qi-tao, Ogbobe Peter O, et al. Forward kinematics analysis of parallel robots using global Newton-Raphson method[C]//2009 2nd International Conference on Intelligent Computing Technology and Automation, Changsha, China,2009.

[8] Goncalves Nuno, Araújo Helder. Linear solution for the pose estimation of noncentral catadioptric systems[C]//Proceedings of the IEEE International Conference on Computer Vision, 2007.

[9] 程永伦,朱世强,刘松国,等.基于旋转子矩阵正交 的6R机器人运动学逆解研究[J].机器人,2008,30(2):160-164. Cheng Yong-lun, Zhu Shi-qiang, Liu Song-guo, et al. Inverse kinematics of 6R robots based on the orthogonal character of rotation sub-matrix[J]. Robot, 2008, 30(2):160-164.

[10] 程世利,吴洪涛,王超群,等. 基于正交补的6-3 Stew art 并联机构运动学正解[J]. 中国机械工程,2011,22(5):505-508. Cheng Shi-li, Wu Hong-tao, Wang Chao-qun, et al. Forward kinematics analysis of 6-3 stewart parallel mechanisms based on orthogonal complement method[J]. Chinese Journal of Mechanical Engineering, 2011, 22(5):505-508.

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