组分(热力学)
对象(语法)
纹理(宇宙学)
电子皮肤
计算机科学
感知
人工智能
计算机视觉
视觉对象识别的认知神经科学
触觉知觉
人机交互
触觉传感器
触觉技术
模式识别(心理学)
特征(语言学)
机器人
机械手
鉴定(生物学)
电子元件
机器人学
作者
Jin Ji,Hongyu Luo,Jiangtao Su,Suhao Wang,Xiaodong Chen,Jizhou Song
标识
DOI:10.1073/pnas.2519693122
摘要
Multisensory electronic skin (e-skin), which mimics the tactile capabilities of human skin, is pivotal in equipping robots with intelligent perceptual functions. Despite numerous advances in multifunctional perceptions, e-skin with combined mechano- and thermosensation capabilities for accurately recognizing objects with similar characteristics is still challenging. Here, we report a multisensory e-skin with a skin-like multilayer construction for smart perceptions, which features the patterned protrusion texture mimicking the skin texture to enhance the pressure-sensing sensitivity, the temperature-sensing component mimicking the thermoreceptors, the pressure-sensing component mimicking the mechanoreceptors, and the heater mimicking the body heat source. This multisensory e-skin exhibits excellent decoupled sensing performances of pressure and temperature, enabling the development of a haptic perception system for evaluating some discernible characteristics (e.g., shape and size) and experience-driven features (e.g., modulus and thermal conductivity) of objects through a simple grasp. Demonstrations of accurate recognition and automatic classification of various objects even with extremely similar surface features highlight the significant potential of this multisensory e-skin in applications such as intelligent soft robotics, prosthetics, and other related fields.
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