arXiv · 2411.05114
STEM: Soft Tactile Electromagnetic Actuator for Virtual Environment Interactions
Abstract
The research aims to expand tactile feedback beyond vibrations to various modes of stimuli, such as indentation, vibration, among others. By incorporating soft material into the design of a novel tactile actuator, we can achieve multi-modality and enhance the device's wearability, which encompasses compliance, safety, and portability. The proposed tactile device can elevate the presence and immersion in VR by enabling diverse haptic feedback such as, force indentation, vibration and other arbitrary force outputs. This approach enables the rendering of haptic interactions with virtual objects, such as grasping of aa 3D virtual object to feel its stiffness - action that was difficult to achieve using widely adopted vibrotactile motors.
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Heeju Mun, Seunggyeom Jung, Seung Mo Jeong, David Santiago Diaz Cortes, Ki-Uk Kyung. 2024-11-07. STEM: Soft Tactile Electromagnetic Actuator for Virtual Environment Interactions. https://arxiv.org/abs/2411.05114
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