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首页> 外文期刊>Neural Networks, IEEE Transactions on >CAVIAR: A 45k Neuron, 5M Synapse, 12G Connects/s AER Hardware Sensory–Processing– Learning–Actuating System for High-Speed Visual Object Recognition and Tracking
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CAVIAR: A 45k Neuron, 5M Synapse, 12G Connects/s AER Hardware Sensory–Processing– Learning–Actuating System for High-Speed Visual Object Recognition and Tracking

机译:鱼子酱:45k神经元,5M突触,12G Connects / s AER硬件,用于高速视觉对象识别和跟踪的感官,处理,学习,致动系统

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摘要

This paper describes CAVIAR, a massively parallel hardware implementation of a spike-based sensing–processing–learning–actuating system inspired by the physiology of the nervous system. CAVIAR uses the asychronous address–event representation (AER) communication framework and was developed in the context of a European Union funded project. It has four custom mixed-signal AER chips, five custom digital AER interface components, 45k neurons (spiking cells), up to 5M synapses, performs 12G synaptic operations per second, and achieves millisecond object recognition and tracking latencies.
机译:本文介绍了CAVIAR,这是一种受神经系统生理学启发的基于尖峰的传感,处理,学习,执行系统的大规模并行硬件实现。 CAVIAR使用异步地址-事件表示(AER)通信框架,并且是在欧盟资助的项目中开发的。它具有四个定制的混合信号AER芯片,五个定制的数字AER接口组件,45k神经元(尖峰细胞),高达5M的突触,每秒执行12G突触操作,并实现毫秒级的对象识别和跟踪延迟。

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