神经形态工程学
钙钛矿(结构)
计算机科学
电容器
冯·诺依曼建筑
计算
人工智能
机器人学
测距
Spike(软件开发)
电压
机器人
电气工程
工程类
人工神经网络
算法
电信
操作系统
软件工程
化学工程
作者
Cinthya Trujillo Herrera,John G. Labram
摘要
Designed to outperform conventional computers when performing machine-learning tasks, neuromorphic computation is the principle whereby certain aspects of the human brain are replicated in hardware. While great progress has been made in this field in recent years, almost all input signals provided to neuromorphic processors are still designed for traditional (von Neumann) computer architectures. Here, we show that a simple photosensitive capacitor will inherently reproduce certain aspects of biological retinas. We found that capacitors based on metal halide perovskites will output a brief voltage spike in response to changes in incident light intensity, but output zero voltage under constant illumination. Such a sensor is not only optimized for use with spiking neuromorphic processors but also anticipated to have broad appeal from fields such as light detection and ranging, autonomous vehicles, facile recognition, navigation, and robotics.
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