用硅胶气动触觉装置实现压力、振动与热感的同步模拟。
Silicone-made Tactile Actuator Integrated with Hot Thermo-fiber Finger Sleeve
- 硅胶气动结构分上下腔,分别生成压力与振动反馈。
- 微控制器调控热织物温度,实现精准热感输出。
- 适用于虚拟现实中的多模态触觉沉浸体验。
多模态触觉反馈对提升虚拟环境的真实感和沉浸感至关重要。本文提出一种新型硅胶指尖执行器,集成加热热织物指套,可同时呈现压力、振动与热感反馈。执行器通过气压驱动,利用两个由气动阀控制的空气腔室实现触觉响应:下腔负责压力反馈,上腔用于振动反馈。热织物指套通过微控制器输出的PWM信号调节温度,导电纱线将热感分布于织物表面。为验证性能,设计了包含液态碗和火焰炉的虚拟场景,可实现压力、振动与温度的同步或连续触觉模拟。
原文摘要 · Abstract (English)
Multi-mode haptic feedback is essential to achieve high realism and immersion in virtual environments. This paper proposed a novel silicone fingertip actuator integrated with a hot thermal fabric finger sleeve to render pressure, vibration, and hot thermal feedback simultaneously. The actuator is pneumatically actuated to render a realistic and effective tactile experience in accordance with hot thermal sensation. The silicone actuator, with two air chambers controlled by pneumatic valves connected to compressed air tanks. Simultaneously, a PWM signal from a microcontroller regulates the temperature of the thermal fabric sleeve, enhancing overall system functionality. The lower chamber of the silicone actuator is responsible for pressure feedback, whereas the upper chamber is devoted to vibrotactile feedback. The conductive yarn or thread was utilized to spread the thermal feedback actuation points on the thermal fabric's surface. To demonstrate the actuator's capability, a VR environment consisting of a bowl of liquid and a stove with fire was designed. Based on different functionalities the scenario can simulate the tactile perception of pressure, vibration, and temperature simultaneously or consecutively.
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