手套式触觉信息传输系统

Hideki Kawai, H. Itoh, Takuya Nakano, H. Kajimoto, Y. Yanagida
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引用次数: 1

摘要

通过用手套等衣服覆盖皮肤,人类成功地在恶劣的环境中生存下来,并从事危险的工作。然而,当我们穿上覆盖材料时,触觉信息丢失了;这可能会降低工作效率,降低接触时刻的物体感知性能。为了解决这个问题,提出了通过覆盖材料传递触觉信息的“触觉通”系统的概念。然而,这一概念的有效性仅通过用一根手指垂直推动物体表面来验证;目前还没有提出可以用于实际复杂手指运动的系统。我们构建了一个手套式的触觉穿透系统,可以用于实际的手指运动。利用该系统对棒状物体角度的判别阈值进行了实验研究。因此,在我们的系统的支持下,通过手套获得的角度识别阈值与徒手获得的角度识别阈值相当。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Glove-Through Tactile Information Transmission System
By covering the skin with clothes such as gloves, humans have managed to survive in severe environments and undertake dangerous work. However, when we wear covering materials, tactile information is lost; this may decrease working efficiency and degrade the performance of object perception at the moment of contact. In order to address this issue, the concept of a "haptic-through" system that transmits tactile information through a covering material has been proposed. However, the effectiveness of this concept has been verified only by vertically pushing a surface of an object with one finger; there have been no systems proposed that can be used in actual complex finger motion. We constructed a glove-style haptic-through system that can be used in practical finger motion. By using this system, we conducted an experiment to investigate the discrimination threshold of the angle of a rod-shaped object. As a result, the angle discrimination threshold through a glove, with the support of our system, was equivalent to that obtained with bare hands.
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