神经形态工程学
模块化设计
计算机科学
感觉系统
人工智能
触觉传感器
主动感知
更安全的
机器人学
机器人
感知
人机交互
触觉知觉
接口(物质)
钥匙(锁)
工程类
火车
神经科学
模拟
脑-机接口
嵌入式系统
计算机视觉
仿生学
医疗机器人
简单(哲学)
作者
Yuyu Gao,Jianpeng Zhang,Hehua Zhang,Lung Chow,Guangyao Zhao,Guihuan Guo,Chun Ki Yiu,Binbin Zhang,Ya Huang,Jingkun Zhou,Qiang Zhang,Ting Huang,Yuan Guo,Jian Hui Li,J. C. Li,Xingcan Huang,Zhenlin Chen,Zhenyu Liu,Yuze Qiu,Chuanfei Guo
标识
DOI:10.1073/pnas.2520922122
摘要
Humanoid robots with advanced sensory capabilities are increasingly demanded for empathetic, close-contact interactions with humans. Electronic skin (E-skin) is a key enabling technology for such tactile perception. However, current E-skins are limited to basic tactile sensing with simple circuit architecture. Here, we introduce a neuromorphic robotic e-skin (NRE-skin) that not only provides fundamental tactile sensing but also integrates advanced features, such as active pain and injury detection. The NRE-skin encodes dynamic tactile stimuli into neural-like pulse trains and features active pain detection that triggers protective reflexes. Additionally, its injury sensing and modular design enable precise localization of damaged areas and rapid replacement of affected skin. By emulating human sensory and protective systems, the NRE-skin facilitates more natural and safer human–robot interactions.
科研通智能强力驱动
Strongly Powered by AbleSci AI