Evaluating Angular Accuracy of Wrist-based Haptic Directional Guidance for Hand Movement

Jonggi Hong, Lee Stearns, Jon E. Froehlich, David Ross, Leah Findlater
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引用次数: 23

Abstract

Haptic guidance for the hand can offer an alternative to visual or audio feedback when those information channels are overloaded or inaccessible due to environmental factors, vision impairments, or hearing loss. We report on a controlled lab experiment to evaluate the impact of directional wrist-based vibro-motor feedback on hand movement, comparing lower-fidelity (4-motor) and higher-fidelity (8-motor) wristbands. Twenty blindfolded participants completed a series of trials, which consisted of interpreting a haptic stimulus and executing a 2D directional movement on a touchscreen. We compare the two conditions in terms of movement error and trial speed, but also analyze the impact of specific directions on performance. Our results show that doubling the number of haptic motors reduces directional movement error but not to the extent expected. We also empirically derive an apparent lower bound in accuracy of ~25° in interpreting and executing on the directional haptic signal.
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评估基于手腕的手部运动触觉定向引导的角度精度
当这些信息通道由于环境因素、视力障碍或听力损失而过载或无法访问时,手部触觉指导可以提供视觉或音频反馈的替代方案。我们报告了一项受控的实验室实验,以评估定向腕部振动电机反馈对手部运动的影响,比较了低保真度(4个电机)和高保真度(8个电机)腕带。20名被蒙住眼睛的参与者完成了一系列的试验,其中包括解释触觉刺激和在触摸屏上执行2D方向运动。我们在运动误差和试验速度方面比较了两种情况,并分析了具体方向对性能的影响。我们的研究结果表明,将触觉马达的数量增加一倍可以减少方向运动误差,但没有达到预期的程度。我们还通过经验推导出了在解释和执行定向触觉信号时精度约为25°的明显下限。
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