Guo Zi Hao, Wang Hai Lu, Shao Jiajia, Shao Yangshi, Jia Luyao, Li Longwei, Pu Xiong, Wang Zhong Lin
Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, P. R. China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing 100049, P. R. China.
Sci Adv. 2022 May 27;8(21):eabo5201. doi: 10.1126/sciadv.abo5201.
Artificial haptic sensors form the basis of touch-based human-interfaced applications. However, they are unable to respond to remote events before physical contact. Some elasmobranch fishes, such as seawater sharks, use electroreception somatosensory system for remote environmental perception. Inspired by this ability, we design a soft artificial electroreceptor for sensing approaching targets. The electroreceptor, enabled by an elastomeric electret, is capable of encoding environmental precontact information into a series of voltage pulses functioning as unique precontact human interfaces. Electroceptor applications are demonstrated in a prewarning system, robotic control, game operation, and three-dimensional object recognition. These capabilities in perceiving proximal precontact events can lenrich the functionalities and applications of human-interfaced electronics.
人工触觉传感器构成了基于触摸的人机交互应用的基础。然而,它们在物理接触之前无法对远程事件做出响应。一些软骨鱼类,如海水鲨鱼,利用电感受体感系统进行远程环境感知。受此能力启发,我们设计了一种用于感知接近目标的柔性人工电感受器。该电感受器由弹性驻极体驱动,能够将环境预接触信息编码为一系列电压脉冲,作为独特的预接触人机接口发挥作用。电感受器应用在预警系统、机器人控制、游戏操作和三维物体识别中得到了展示。这些感知近端预接触事件的能力可以丰富人机接口电子设备的功能和应用。