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用于无线混合现实交互的神经形态计算辅助摩擦电电容耦合触觉传感器阵列

Neuromorphic Computing-Assisted Triboelectric Capacitive-Coupled Tactile Sensor Array for Wireless Mixed Reality Interaction.

作者信息

Xie Xinkai, Wang Qinan, Zhao Chun, Sun Qilei, Gu Haicheng, Li Junyan, Tu Xin, Nie Baoqing, Sun Xuhui, Liu Yina, Lim Eng Gee, Wen Zhen, Wang Zhong Lin

机构信息

Institute of Functional Nano and Soft Materials (FUNSOM), Joint International Research Laboratory of Carbon-Based Functional Materials and Devices, Soochow University, Suzhou 215123, P. R. China.

Department of Electrical and Electronic Engineering, School of Advanced Technology, Xi'an Jiaotong-Liverpool University, Suzhou 215123, P. R. China.

出版信息

ACS Nano. 2024 Jul 2;18(26):17041-17052. doi: 10.1021/acsnano.4c03554. Epub 2024 Jun 21.

Abstract

Flexible tactile sensors show promise for artificial intelligence applications due to their biological adaptability and rapid signal perception. Triboelectric sensors enable active dynamic tactile sensing, while integrating static pressure sensing and real-time multichannel signal transmission is key for further development. Here, we propose an integrated structure combining a capacitive sensor for static spatiotemporal mapping and a triboelectric sensor for dynamic tactile recognition. A liquid metal-based flexible dual-mode triboelectric-capacitive-coupled tactile sensor (TCTS) array of 4 × 4 pixels achieves a spatial resolution of 7 mm, exhibiting a pressure detection limit of 0.8 Pa and a fast response of 6 ms. Furthermore, neuromorphic computing using the MXene-based synaptic transistor achieves 100% recognition accuracy of handwritten numbers/letters within 90 epochs based on dynamic triboelectric signals collected by the TCTS array, and cross-spatial information communication from the perceived multichannel tactile data is realized in the mixed reality space. The results illuminate considerable application possibilities of dual-mode tactile sensing technology in human-machine interfaces and advanced robotics.

摘要

柔性触觉传感器因其生物适应性和快速信号感知能力,在人工智能应用中展现出潜力。摩擦电传感器可实现主动动态触觉传感,而集成静压传感和实时多通道信号传输是其进一步发展的关键。在此,我们提出一种集成结构,将用于静态时空映射的电容式传感器和用于动态触觉识别的摩擦电传感器相结合。一个4×4像素的基于液态金属的柔性双模式摩擦电-电容耦合触觉传感器(TCTS)阵列实现了7毫米的空间分辨率,压力检测极限为0.8帕,响应速度快至6毫秒。此外,基于TCTS阵列收集的动态摩擦电信号,使用基于MXene的突触晶体管进行神经形态计算,在90个训练周期内实现了手写数字/字母100%的识别准确率,并在混合现实空间中实现了从感知的多通道触觉数据的跨空间信息通信。这些结果揭示了双模式触觉传感技术在人机界面和先进机器人技术中的巨大应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69d6/11223466/fbddc5c830f5/nn4c03554_0001.jpg

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