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Design and control of a novel thermo-tactile multimodal display

机译:一种新型热触觉多模态显示器的设计与控制

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This paper describes the design and control of a water-based multimodal haptic display. The system is able to provide temperature and pressure (pulse) cues through a finger-sized display. Temperature feedback is obtained by mixing hot and cold water stored in two water tanks. The heating and cooling of the water is performed with a Peltier whose two surfaces are used, thus increasing the energetic efficiency of the system. Mixing the hot and cold water allows for very rapid temperature changes essential in applications such as object discrimination. The device can provide cooling rates sufficient to mimic the contact with any object found in our daily lives. Tactile (pulse) feedback is achieved by closing the circuit with a valve while building up the pressure with the pump. Results show that temperature is controlled with a precision of ±1°C in the range of 20°C to 40°C while simultaneously generating sensible pulses. In addition, this display is MRI-compatible as it is remotely actuated using water. These characteristics make the system suitable for psychophysics experiments, which are considered to be one of the goals and the next logic step of this work.
机译:本文介绍了水性多模式触觉显示器的设计和控制。该系统能够通过手指尺寸显示器提供温度和压力(脉冲)线索。通过将储存在两个水箱中的热和冷水混合来获得温度反馈。用珀耳帖进行水的加热和冷却,其使用两个表面,从而提高了系统的能量效率。混合热和冷水允许在诸如物体鉴别的应用中非常快速的温度变化。该装置可以提供足以模仿与我们日常生活中发现的任何物体接触的冷却速率。通过将电路与阀门闭合,同时用泵构建压力来实现触觉(脉冲)反馈。结果表明,温度控制在20°C至40°C的范围内,在20°C至40°C的范围内,同时产生明智的脉冲。此外,该显示器是MRI兼容,因为它是使用水远程驱动的。这些特征使系统适用于心理物理学实验,这被认为是这项工作的目标之一和下一个逻辑步骤。

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