基于无标记视觉系统的轮椅网球推进接触识别算法研究

Enrico Ferlinghetti, Inge Salzmann, Marco Ghidelli, Thomas Rietveld, R. Vegter, M. Lancini
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引用次数: 0

摘要

本研究探讨无标记视觉系统在轮椅推进中的手与手圈接触检测。测量系统是基于相机采集RGB和深度图像。通过Mediapipe[1]检测手,其位置相对于车轮表示。五个特征被提取出来并给出一个分类器,该分类器能够从开始到结束确定手和手圈之间何时有接触。为了验证这一程序,17名没有轮椅推进经验的健全参与者在六项测试中推动轮椅,这些测试由参与者手中有/没有网球拍以及三种不同速度(4公里/小时,5.4公里/小时和最大冲刺)的组合进行。结果表明,手的识别不受球拍存在的影响,但手的速度对其影响很大。此外,接触检测的开始误差为$-0.01\pm 0.12\mathrm{~s}$,接触结束误差为$0.00\pm 0.12\mathrm{~s}$(平均pm标准偏差),两者的RMSE为0.12s,当球拍存在时略有改善,并且在次最大速度和最大速度下执行的测试之间没有显着差异。这项研究强调了无标记视觉系统在轮椅推进中接触检测的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algorithm Development for Contact Identification during Wheelchair Tennis Propulsion using Marker-less Vision System
This study investigates marker-less vision systems for contact detection between the hand and hand-rim in wheelchair propulsion. The measurement system is based on a camera collecting RGB and depth images. The hand is detected through Mediapipe [1] and its position is expressed with respect to the wheel. Five features are extracted and given to a classifier able to determine when there is contact between hand and hand-rim from start to end. To validate this procedure, 17 able-bodied participants without prior experience in wheelchair propulsion pushed the wheelchair on an ergometer in six tests, given by the combinations of the presence/absence of a tennis racket in the hand of the participant and of three different speeds: 4 km/h, 5.4 km/h and maximal sprint. The results showed that the hand identification is not influenced by the presence of the racket, but it is heavily influenced by the speed of the hand. Moreover, the errors in contact detection were $-0.01\pm 0.12\mathrm{~s}$ for start and $0.00\pm 0.12\mathrm{~s}$ for end of contact (mean pm standard deviation), with a RMSE of 0.12s for both with a slight improvement when the racket is present and no significant differences between the tests executed at sub-maximal speed and maximal speed. The study highlights the potential use of marker-less vision systems for contact detection in wheelchair propulsion.
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