Accurate Numerical Methods for Computing 2D and 3D Robot Workspace

被引:4
|
作者
Cao, Yi [1 ]
Lu, Ke [1 ]
Li, Xiujuan [1 ]
Zang, Yi [1 ]
机构
[1] Henan Univ Technol, Inst Adv Automat Technol, Chengchou, Peoples R China
来源
关键词
Beta distribution; Robot manipulator; Polygon area; 2D and 3D workspace; Shape and size; DEXTEROUS WORKSPACES; SERIAL MANIPULATORS; BOUNDARIES; GENERATION; OPTIMIZATION; ALGORITHM; DESIGN;
D O I
暂无
中图分类号
TP24 [机器人技术];
学科分类号
080202 ; 1405 ;
摘要
Exact computation of the shape and size of robot manipulator workspace is very important for its analysis and optimum design. First, the drawbacks of the previous methods based on Monte Carlo are pointed out in the paper, and then improved strategies are presented systematically. In order to obtain more accurate boundary points of two-dimensional (2D) robot workspace, the Beta distribution is adopted to generate random variables of robot joints. And then, the area of workspace is acquired by computing the area of the polygon what is a closed path by connecting the boundary points together. For comparing the errors of workspaces which are generated by the previous and the improved method from shape and size, one planar robot manipulator is taken as example. A spatial robot manipulator is used to illustrate that the methods can be used not only on planar robot manipulator, but also on the spatial. The optimal parameters are proposed in the paper to computer the shape and size of 2D and 3D workspace. Finally, we provided the computation time and discussed the generation of 3D workspace which is based on 3D reconstruction from the boundary points.
引用
收藏
页码:1 / 13
页数:13
相关论文
共 50 条
  • [41] Industrial workspace detection of a robotic arm using combined 2D and 3D vision processing
    Schorr, Logan
    Cobilean, Victor
    Mavikumbure, Harindra S.
    Manic, Milos
    Hadimani, Ravi L.
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2025, 136 (3-4): : 1317 - 1326
  • [42] Industrial workspace detection of a robotic arm using combined 2D and 3D vision processing
    Schorr, Logan
    Cobilean, Victor
    Mavikumbure, Harindra S.
    Manic, Milos
    Hadimani, Ravi L.
    International Journal of Advanced Manufacturing Technology, 2024,
  • [43] 21/2D or 3D?
    Roth, S
    Küster, B
    Sura, H
    KUNSTSTOFFE-PLAST EUROPE, 2004, 94 (07): : 65 - 67
  • [44] 2D and 3D on demand
    Philippi, Anne
    F & M; Feinwerktechnik, Mikrotechnik, Messtechnik, 1998, 106 (06): : 412 - 414
  • [45] From 2D to 3D
    Steven De Feyter
    Nature Chemistry, 2011, 3 (1) : 14 - 15
  • [46] Three novel accurate pixel-driven projection methods for 2D CT and 3D EPR imaging
    Qiao, Zhiwei
    Redler, Gage
    Gui, Zhiguo
    Qian, Yuhua
    Epel, Boris
    Halpern, Howard
    JOURNAL OF X-RAY SCIENCE AND TECHNOLOGY, 2018, 26 (01) : 83 - 102
  • [47] Stability Analysis of Unsupported Vertical Cuts in the Vadose Zone using 2D and 3D Numerical Methods
    Brennan, Gregory
    Oh, Won-Taek
    Nasir, Othman
    4TH EUROPEAN CONFERENCE ON UNSATURATED SOILS (E-UNSAT 2020), 2020, 195
  • [48] Models and numerical methods in nonlinear diffusion equations for 2D/3D image and image sequence analysis
    Morigi, S
    Sgallari, F
    NUMERICAL ANALYSIS: METHODS AND MATHEMATICAL SOFTWARE, SUPPLEMENT, 2000, 46 : 129 - 141
  • [49] Robust and accurate corneal interfaces segmentation in 2D and 3D OCT images
    Zhu, Xueli
    Huang, Wei
    Ma, Shaodong
    Yi, Quanyong
    FRONTIERS IN MEDICINE, 2024, 11
  • [50] Local Upsampling Fourier Transform for accurate 2D/3D image registration
    Wang, Cailing
    Jing, Xiaoyuan
    Zhao, Chunxia
    COMPUTERS & ELECTRICAL ENGINEERING, 2012, 38 (05) : 1346 - 1357