神经形态工程学
控制重构
灵活性(工程)
离子液体
纳米技术
计算机科学
电子元件
组分(热力学)
电子线路
电子材料
软件
机器人学
材料科学
计算机体系结构
人工智能
机器人
人工神经网络
嵌入式系统
化学
工程类
物理
电气工程
生物化学
统计
数学
程序设计语言
热力学
催化作用
作者
Noushin Raeisi Kheirabadi,Alessandro Chiolerio,Konrad Szaciłowski,Andrew Adamatzky
标识
DOI:10.1002/cphc.202200390
摘要
Advances in flexible electronic devices and robotic software require that sensors and controllers be virtually devoid of traditional electronic components, be deformable and stretch-resistant. Liquid electronic devices that mimic biological synapses would make an ideal core component for flexible liquid circuits. This is due to their unbeatable features such as flexibility, reconfiguration, fault tolerance. To mimic synaptic functions in fluids we need to imitate dynamics and complexity similar to those that occurring in living systems. Mimicking ionic movements are considered as the simplest platform for implementation of neuromorphic in material computing systems. We overview a series of experimental laboratory prototypes where neuromorphic systems are implemented in liquids, colloids and gels.
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