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扭矩敏感型执行器的灵敏度分析与验证

Analysis and Validation of Sensitivity in Torque-Sensitive Actuators.

作者信息

Tran Minh, Gabert Lukas, Lenzi Tommaso

机构信息

Department of Mechanical Engineering, The Robotics Center, University of Utah, Salt Lake City, UT 84112, USA.

Rocky Mountain Center for Occupational and Environmental Health, Salt Lake City, UT 84111, USA.

出版信息

Actuators. 2023 Feb;12(2). doi: 10.3390/act12020080. Epub 2023 Feb 14.

Abstract

Across different fields within robotics, there is a great need for lightweight, efficient actuators with human-like performance. Linkage-based passive variable transmissions and torque-sensitive transmissions have emerged as promising solutions to meet this need by significantly increasing actuator efficiency and power density, but their modeling and analysis remain an open research topic. In this paper, we introduce the sensitivity between input displacement and output torque as a key metric to analyze the performance of these complex mechanisms in dynamic tasks. We present the analytical model of sensitivity in the context of two different torque-sensitive transmission designs, and used this sensitivity metric to analyze the differences in their performance. Experiments with these designs implemented within a powered knee prosthesis were conducted, and results validated the sensitivity model as well as its role in predicting actuators' dynamic performance. Together with other design methods, sensitivity analysis is a valuable tool for designers to systematically analyze and create transmission systems capable of human-like physical behavior.

摘要

在机器人技术的不同领域,迫切需要具有类人性能的轻量化、高效执行器。基于连杆的被动可变传动和扭矩敏感传动已成为满足这一需求的有前景的解决方案,它们通过显著提高执行器效率和功率密度来实现,但对其建模和分析仍是一个开放的研究课题。在本文中,我们引入输入位移与输出扭矩之间的灵敏度作为关键指标,以分析这些复杂机构在动态任务中的性能。我们在两种不同的扭矩敏感传动设计背景下给出了灵敏度的解析模型,并使用该灵敏度指标来分析它们性能上的差异。对在动力膝关节假体中实现的这些设计进行了实验,结果验证了灵敏度模型及其在预测执行器动态性能方面的作用。与其他设计方法一起,灵敏度分析是设计师系统分析和创建具有类人物理行为的传动系统的宝贵工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a1f/10065460/976f9661bb9e/nihms-1882899-f0001.jpg

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