Lee Seohu, Jang Seongkwan, Cha Youngsu
School of Electrical Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, South Korea.
School of Mechanical Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, South Korea.
iScience. 2024 Nov 1;27(12):111303. doi: 10.1016/j.isci.2024.111303. eCollection 2024 Dec 20.
Touch is an inherent source of tactile sensation in everyday life, followed by vision and audition. For rich tactile feedback, multimodal haptic feedback is necessary because a single touch simultaneously excites multiple types of tactile receptors. In this paper, we present a soft wearable thermotouch haptic interface (THI) that simultaneously and independently provides touch and thermal stimulation using only one end-effector, the thermotouch haptic actuator (THA). A THA consists of a pneumatic-based touch haptic actuator and a thermoelectric-based thermal haptic stimulator. A novel design for the harmonious integration of the two different parts with wearable air pumps was proposed. Finally, the efficacy of the THI with virtual reality (VR) was evaluated by a user test. In VR, users manipulated a virtual object, and the corresponding touch and thermal feedback were provided. The THI demonstrated that multimodal haptic feedback significantly enhances the VR engagement of users compared to single-modal feedback.
触觉是日常生活中触觉感受的固有来源,其次是视觉和听觉。为了获得丰富的触觉反馈,多模态触觉反馈是必要的,因为单次触摸会同时激发多种类型的触觉感受器。在本文中,我们展示了一种柔软的可穿戴式热触觉触觉接口(THI),它仅使用一个末端执行器——热触觉触觉致动器(THA),就能同时且独立地提供触摸和热刺激。一个THA由一个基于气动的触摸触觉致动器和一个基于热电的热触觉刺激器组成。提出了一种将这两个不同部分与可穿戴气泵和谐集成的新颖设计。最后,通过用户测试评估了带有虚拟现实(VR)的THI的功效。在VR中,用户操纵一个虚拟物体,并提供相应的触摸和热反馈。THI表明,与单模态反馈相比,多模态触觉反馈显著增强了用户对VR的参与度。