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What You Can't Feel Won't Hurt You: Evaluating Haptic Hardware Using a Haptic Contrast Sensitivity Function

机译:您感觉不到的事情不会伤害您:使用触觉对比敏感度函数评估触觉硬件

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In this paper, we extend the concept of the contrast sensitivity functionȁ4;used to evaluate video projectorsȁ4;to the evaluation of haptic devices. We propose using human observers to determine if vibrations rendered using a given haptic device are accompanied by artifacts detectable to humans. This determination produces a performance measure that carries particular relevance to applications involving texture rendering. For cases in which a device produces detectable artifacts, we have developed a protocol that localizes deficiencies in device design and/or hardware implementation. In this paper, we present results from human vibration detection experiments carried out using three commercial haptic devices and one high performance voice coil motor. We found that all three commercial devices produced perceptible artifacts when rendering vibrations near human detection thresholds. Our protocol allowed us to pinpoint the deficiencies, however, and we were able to show that minor modifications to the haptic hardware were sufficient to make these devices well suited for rendering vibrations, and by extension, the vibratory components of textures. We generalize our findings to provide quantitative design guidelines that ensure the ability of haptic devices to proficiently render the vibratory components of textures.
机译:在本文中,我们将对比度灵敏度函数ȁ4的概念(用于评估视频投影仪ȁ4)扩展到了触觉设备的评估。我们建议使用人类观察者来确定使用给定触觉设备渲染的振动是否伴有人类可检测到的伪影。该确定会产生性能度量,该度量与涉及纹理渲染的应用程序特别相关。对于设备产生可检测伪像的情况,我们已经开发了一种协议,可以定位设备设计和/或硬件实现中的缺陷。在本文中,我们介绍了使用三种商用触觉设备和一台高性能音圈电机进行的人体振动检测实验的结果。我们发现,在将振动呈现给人类检测阈值附近时,所有三种商用设备都会产生可感知的伪影。然而,我们的协议允许我们查明不足之处,并且我们能够证明,对触觉硬件进行少量修改足以使这些设备非常适合呈现振动,并进而扩展出纹理的振动成分。我们对研究结果进行概括,以提供量化的设计准则,以确保触觉设备能够熟练地渲染纹理的振动成分。

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