首页 /研究 /Design and development of a cable-driven elephant trunk robot with variable cross-sections
OTHER

Design and development of a cable-driven elephant trunk robot with variable cross-sections

Guodong Qin, Qi Wang, Changyang Li, Aihong Ji, Huapeng Wu, Zhikang Yang, Shikun Wen

发表年份
2023
引用次数
9

摘要

Purpose In large equipment and highly complex confined workspaces, the maintenance is usually carried out by snake-arm robots with equal cross-sections. However, the equal cross-sectional design results in the snake arm suffering from stress concentration and restricted working space. The purpose of this paper is to design a variable cross-section elephant trunk robot (ETR) that can address these shortcomings through bionic principles. Design/methodology/approach This paper proposes a cable-driven ETR to explore the advantages and inspiration of variable cross-section features for hyper-redundant robot design. For the kinematic characteristics, the influence of the variable cross-section design on the maximum joint angle of the ETR is analysed using the control variables method and the structural parameters are selected. Based on the biological inspiration of the whole elephant trunk following the movement of the trunk tip, a trajectory-tracking algorithm is designed to solve the inverse kinematics of the ETR. Findings Simulation and test results show the unique advantages of the proposed variable cross-section ETR in kinematics and forces, which can reduce stress concentrations and increase the flexibility of movement. Originality/value This paper presents a design method for a variable cross-section ETR for confined working spaces, analyses the kinematic characteristics and develops a targeted trajectory control algorithm.

关键词

KinematicsTrajectoryCross section (physics)Variable (mathematics)WorkspaceComputer scienceRobotInverse kinematicsFlexibility (engineering)Trunk

相关论文

查看 OTHER 分类全部论文