人工智能
软机器人
计算机科学
人机交互
机器人学
卷积神经网络
计算机视觉
触觉传感器
感知
机器人
对象(语法)
软传感器
目标检测
工程类
视觉对象识别的认知神经科学
仿生学
压阻效应
触觉技术
认知机器人学
遥操作
智能传感器
深度学习
感觉系统
接口(物质)
控制工程
夹持器
传感器融合
作者
Youning Duo,Jinxi Duan,Xinyu Hao,Kaining Tao,Xin Liu,Mingyuan Li,Xingyu Chen,Wenbo Liu,Zonghao Zuo,Li Wen
标识
DOI:10.1002/aisy.202500900
摘要
Human skin exhibits a complex layered architecture endowed with diverse sensory receptors, facilitating the perception of rich, multimodal information during environmental interactions. This biological paradigm has inspired the development of advanced multimodal flexible sensors and intelligent robotic systems. In this study, it presents a novel multimodal laser‐induced graphene (LIG)‐based flexible sensor (MLFS) that leverages laser processing to rapidly fabricate distinct functional layers of LIG with tunable properties. By integrating triboelectric and piezoresistive mechanisms, the MLFS enables comprehensive detection of proximity and contact stimuli, providing sensitive and reliable environmental feedback. The sensor is seamlessly embedded onto a soft robotic finger, endowing the robotic hand with enhanced perception capabilities for environmental sensing and object discrimination. Experimental evaluations demonstrate that the soft robotic system can autonomously perform object searching and grasping tasks without reliance on visual cues. Moreover, employing a convolutional neural network (CNN), the system achieves high‐accuracy classification of object materials and textures, reaching 98.75% and 98.44%, respectively. This work significantly advances the sensory intelligence of soft robotic systems, offering a robust pathway for integrating multimodal sensing technologies with adaptive soft robotics and highlighting its potential for practical applications in autonomous manipulation and human‐robot interaction.
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