Conceptual design and error analysis of a cable-driven parallel robot

Author:

Li JiaxuanORCID,Zhao YongjieORCID,Tang Qingqiong,Sun Wei,Yuan Feifei,Lu Xinjian

Abstract

Abstract This paper develops the conceptual design and error analysis of a cable-driven parallel robot (CDPR). The earlier error analysis of CDPRs generally regarded the cable around the pulley as a center point and neglected the radius of the pulleys. In this paper, the conceptual design of a CDPR with pulleys on its base platform is performed, and an error mapping model considering the influence of radius of the pulleys for the CDPR is established through kinematics analysis and a full matrix complete differential method. Monte Carlo simulation is adopted to deal with the sensitivity analysis, which can directly describe the contribution of each error component to the total orientation error of the CDPR by virtue of the error modeling. The results show that the sensitivity coefficients of pulleys’ geometric errors and geometric errors of the cables are relatively larger, which confirms that the cable length errors and pulleys’ geometric errors should be given higher priority in design and processing.

Publisher

Cambridge University Press (CUP)

Subject

Computer Science Applications,General Mathematics,Software,Control and Systems Engineering

Reference37 articles.

1. Sensitivity Analysis of the Design Parameters for the Calibration of Cable-driven Parallel Robots

2. Novel devices and interaction techniques for human-scale haptics

3. Error modeling, sensitivity analysis and assembly process of a class of 3-DOF parallel kinematic machines with parallelogram struts;Huang;Sci. China. Ser. E.,2002

4. Configuration design and analysis of a new 3-SPS/S spatial rotation parallel manipulator;Cui;J. Jilin. U Technol. Ed.,2009

5. Sensitivity analysis approaches applied to systems biology models

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1. Error Analysis of the Cable-Driven Parallel Robot in the Upgraded Feed Cabin of FAST;2023 International Conference on Advanced Robotics and Mechatronics (ICARM);2023-07-08

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