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Subject-Specific Wrist Model Calibration and Application to Ergonomic Design of Exoskeletons

机译:特定腕关节模型校准及其在外骨骼人体工程学设计中的应用

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摘要

This paper analyzes the accuracy of non-invasive methods to determine subject-specific kinematics of wrist axes based on unrestricted measurements. Adapting methods from the literature, joint parameters are fitted from measurements derived through an in-vivo, non-invasive procedure. This paper analyzes the accuracy of these fitting methods using a mechanical mock-up, with known geometry and kinematic structure similar to the human wrist, which provides a ground truth for assessment of accuracy. Numerical simulations show that while the range of motion affects the accuracy of parameter estimation, the relative error in the parameters is below 4% for range of motions above 20%. The method was used to fit measurements performed on a human subject and resulting parameters were applied in the design of a subject-specific, ergonomic exoskeleton, which did not significantly alter the natural motor strategies of the subject during a pointing task.
机译:本文分析了无创测量方法的准确性,该方法基于无限制的测量来确定特定于手腕轴的运动学。改编自文献的方法,根据通过体内非侵入性程序得出的测量结果拟合关节参数。本文使用机械模型来分析这些拟合方法的准确性,该模型具有类似于人手腕的已知几何形状和运动学结构,这为评估准确性提供了基础。数值模拟表明,虽然运动范围会影响参数估计的准确性,但对于运动范围大于20%的参数,相对误差低于4%。该方法用于拟合对人类受试者进行的测量,并将所得参数应用于特定于人体工程学的人体工程学外骨骼,在指点任务期间,该骨骼并没有显着改变受试者的自然运动策略。

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