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首页> 外文期刊>Nature Communications >Curved neuromorphic image sensor array using a MoS 2 -organic heterostructure inspired by the human visual recognition system
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Curved neuromorphic image sensor array using a MoS 2 -organic heterostructure inspired by the human visual recognition system

机译:使用MOS 2的弯曲神经形态图像传感器阵列 - 由人类视觉识别系统启发的 - 有机异质结构

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摘要

Conventional imaging and recognition systems require an extensive amount of data storage, pre-processing, and chip-to-chip communications as well as aberration-proof light focusing with multiple lenses for recognizing an object from massive optical inputs. This is because separate chips (i.e., flat image sensor array, memory device, and CPU) in conjunction with complicated optics should capture, store, and process massive image information independently. In contrast, human vision employs a highly efficient imaging and recognition process. Here, inspired by the human visual recognition system, we present a novel imaging device for efficient image acquisition and data pre-processing by conferring the neuromorphic data processing function on a curved image sensor array. The curved neuromorphic image sensor array is based on a heterostructure of MoS2 and poly(1,3,5-trimethyl-1,3,5-trivinyl cyclotrisiloxane). The curved neuromorphic image sensor array features photon-triggered synaptic plasticity owing to its quasi-linear time-dependent photocurrent generation and prolonged photocurrent decay, originated from charge trapping in the MoS2-organic vertical stack. The curved neuromorphic image sensor array integrated with a plano-convex lens derives a pre-processed image from a set of noisy optical inputs without redundant data storage, processing, and communications as well as without complex optics. The proposed imaging device can substantially improve efficiency of the image acquisition and recognition process, a step forward to the next generation machine vision. Designing efficient bio-inspired visual recognition system remains a challenge. Here the authors present a curved neuromorphic image sensor array based on a heterostructure of MoS2 and pV3D3 integrated with a plano-convex lens for efficient image acquisition and data pre-processing.
机译:传统的成像和识别系统需要广泛的数据存储,预处理和芯片到芯片通信以及专注于多个透镜的像差透镜,用于识别来自大量光学输入的对象。这是因为与复杂光学元件结合的单独芯片(即平面图像传感器阵列,存储器设备和CPU)独立地捕获,存储和处理大量图像信息。相比之下,人类视力采用高效的成像和识别过程。这里,由人类视觉识别系统的启发,我们通过在弯曲图像传感器阵列上赋予神经形态数据处理功能来提出一种用于高效图像采集和数据预处理的新型成像装置。弯曲的神经形态图像传感器阵列基于MOS2的异质结构和聚(1,3,5-三甲基-1,3,5-三乙基环氧硅氧烷)。由于其准线性时间依赖性光电流产生和延长的光电流衰减,弯曲的神经形态图像传感器阵列具有光子触发的突触可塑性,从MOS2-有机垂直堆叠中起源于电荷捕获。与平面凸透镜集成的弯曲神经形态图像传感器阵列从一组噪声光学输入导出预处理图像,而无需冗余数据存储,处理和通信以及没有复杂的光学器件。所提出的成像装置可以基本上提高图像采集和识别过程的效率,这是下一代机器视觉的前台。设计高效的生物启发可视识别系统仍然是一个挑战。这里的作者基于MOS2和PV3D3的异质结构呈现弯曲的神经形态图像传感器阵列与平面凸透镜集成,用于有效图像采集和数据预处理。

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