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首页> 外文期刊>ACM Transactions on Applied Perception (TAP) >Lead-me interface for a pulling sensation from hand-held devices
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Lead-me interface for a pulling sensation from hand-held devices

机译:Lead-me界面,可从手持设备上拉动感觉

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摘要

When a small mass in a hand-held device oscillates along a single axis with asymmetric acceleration (strongly peaked in one direction and diffuse in the other), the holder typically experiences a kinesthetic illusion characterized by the sensation of being continuously pushed or pulled by the device. This effect was investigated because of its potential application to a hand-held, nongrounded, haptic device that can convey a sense of a continuous translational force in one direction, which is a key missing piece in haptic research. A 1 degree-of-freedom (DOF) haptic device based on a crank-slider mechanism was constructed. The device converts the constant rotation of an electric motor into the constrained movement of a small mass with asymmetric acceleration. The frequency that maximizes the perceived movement offered by the haptic device was investigated. Tests using three subjects showed that for the prototype, the best frequencies were 5 and 10 cycles per second.
机译:当手持设备中的一小块物体以不对称的加速度沿单轴振动(在一个方向上强烈达到峰值,在另一个方向上扩散)时,固定器通常会遇到一种动觉错觉,其特征是被推杆连续推动或拉动。设备。之所以对这种效果进行了研究,是因为它有可能应用于手持式,不接地的触觉设备,该设备可以在一个方向上传递连续的平移力,这是触觉研究中一个关键的缺失环节。构造了一种基于曲柄滑块机构的1自由度(DOF)触觉设备。该设备将电动机的恒定旋转转换为具有不对称加速度的小质量的受约束的运动。研究了使触觉设备提供的感知运动最大化的频率。使用三个对象的测试表明,对于原型,最佳频率是每秒5和10个循环。

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