Research on Modeling and Motion Optimization for an Underactuated Bionic Scorpion Robot Arm

IF 1.8 4区 计算机科学 Q3 ENGINEERING, BIOMEDICAL
Ning Cao, Jinsheng Liu, Feiling Shen, Xuming Pei, Yupu Liu, Hengyu Li
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引用次数: 0

Abstract

Flexible screen possessing a high-contrast ratio to accomplish high-definition display can be attributed to the accuracy of polarizer assembly. Different from the existing polarizer attached onto a flexible screen, resulting in low-accuracy and nonalignment attaching behaviors, a unique approach of underactuated bionic scorpion robot arms can be developed to explore the stable capture and accurate alignment motion operations. Overall structure design and D–H kinematic simulation of bionic scorpion robot arm can be conducted to analyze virtual three-key typical motions. Motion optimization of structural parameters and corresponding motion workspaces verification can be adopted to evaluate motion range and ability. Experiments can be utilized to verify the rationality of theoretical modeling and optimization simulation of bionic scorpion robot arm. Experimental results illustrate that it is evident to demonstrate that the motion behaviors of bionic scorpion robot arm can be verified to be consistent with three key states of virtual theoretical motions. The key joints possessing minor errors may also be utilized to illustrate the relatively excellent dynamic motions existing in bionic scorpion robot arm. Further, advancing the stable motion behaviors of bionic scorpion robot arm may solve the problems of low-accuracy and misalignment polarizer attachments.
欠驱动仿生蝎子机械臂的建模和运动优化研究
柔性屏幕具有高对比度,可实现高清显示,这与偏振片装配的精确性密不可分。有别于现有将偏振片固定在柔性屏幕上导致的低精度和不对准的固定行为,可以开发一种独特的欠驱动仿生蝎子机械臂方法,探索稳定捕捉和精确对准的运动操作。可对仿生蝎子机械臂进行整体结构设计和 D-H 运动学仿真,分析虚拟三键典型运动。可通过结构参数的运动优化和相应的运动工作空间验证来评估运动范围和能力。利用实验验证仿生蝎子机械臂理论建模和优化仿真的合理性。实验结果表明,仿生蝎子机械臂的运动行为可以验证与虚拟理论运动的三个关键状态一致。误差较小的关键关节也可用于说明仿生蝎子机械臂存在相对出色的动态运动。此外,推进仿生蝎子机械臂的稳定运动行为可解决偏振器附件精度低和不对中的问题。
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来源期刊
Applied Bionics and Biomechanics
Applied Bionics and Biomechanics ENGINEERING, BIOMEDICAL-ROBOTICS
自引率
4.50%
发文量
338
审稿时长
>12 weeks
期刊介绍: Applied Bionics and Biomechanics publishes papers that seek to understand the mechanics of biological systems, or that use the functions of living organisms as inspiration for the design new devices. Such systems may be used as artificial replacements, or aids, for their original biological purpose, or be used in a different setting altogether.
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