MultiTip: A multimodal mechano-thermal soft fingertip

Gabor Soter, A. Conn, H. Hauser, N. Lepora, J. Rossiter
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引用次数: 6

Abstract

In this paper we present MultiTip, a novel multimodal mechano-thermal soft tactile fingertip. In comparison to previous multimodal sensing techniques, our device uses a single optical sensor to detect both mechanical deformation and temperature change simultaneously. Our fingertip is an improved version of the TacTip, a tactile fingertip that combines compliant materials and optical tracking to perform a variety of tasks such as object manipulation, contact and pressure sensing. However, temperature sensing, which is one of the last remaining challenges to mimic the full sensory capabilities of the human finger, has been neglected as a modality in optical tactile sensors. In this work we present a novel design and fabrication method for the skin of the TacTip that enables the device to simultaneously sense local temperature change while concurrently transducing the mechanical aspects of touch. This is achieved by creating a smart skin that changes its colour due to temperature change. MultiTip achieves multimodality without adding another sensing element and is therefore ideally suited to miniaturizing the sensor. We present the characteristics of the proposed sensor in sensing mechanical deformation and temperature at the same time. Finally, we demonstrate two possible real-world applications. MultiTip thus makes an important step towards full biomimicry of the human tactile fingertip.
多指尖:一种多模态机械热软指尖
在本文中,我们提出了MultiTip,一种新型的多模态机械热软触觉指尖。与以前的多模态传感技术相比,我们的设备使用单个光学传感器同时检测机械变形和温度变化。我们的指尖是tactical的改进版本,触觉指尖结合了兼容材料和光学跟踪来执行各种任务,如物体操作,接触和压力传感。然而,温度传感是模拟人类手指全部感觉能力的最后挑战之一,作为光学触觉传感器的一种模式,它一直被忽视。在这项工作中,我们提出了一种新颖的设计和制造方法,用于战术的皮肤,使设备能够同时感知局部温度变化,同时转导触摸的机械方面。这是通过创造一种智能皮肤来实现的,它可以随着温度的变化而改变颜色。MultiTip无需添加另一个传感元件即可实现多模态,因此非常适合传感器小型化。介绍了该传感器在同时感知机械变形和温度的特点。最后,我们将演示两个可能的实际应用程序。因此,MultiTip向完全仿生学人类触觉指尖迈出了重要的一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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