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Optical hybrid analog-digital signal processing based on spike processing in neurons

机译:基于神经元尖峰处理的光混合模数信号处理

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Spike processing is one kind of hybrid analog-digital signal processing, which has the efficiency of analog processing and the robustness to noise of digital processing. When instantiated with optics, a hybrid analog-digital processing primitive has the potential to be scalable, computationally powerful, and have high operation bandwidth. These devices open up a range of processing applications for which electronic processing is too slow. Our approach is based on a hybrid analog/digital computational primitive that elegantly implements the functionality of an integrate-and-fire neuron using a Ge-doped non-linear optical fiber and off-the-shelf semiconductor devices. In this paper, we introduce our photonic neuron architecture and demonstrate the feasibility of implementing simple photonic neuromorphic circuits, including the auditory localization algorithm of the bam owl, which is useful for LIDAR localization, and the crayfish tail-flip escape response.
机译:尖峰处理是一种混合的模数信号处理,具有模拟处理的效率和对数字处理噪声的鲁棒性。当用光学实例化时,混合模数处理原语具有可伸缩性,计算能力强和具有高操作带宽的潜力。这些设备打开了电子处理速度太慢的一系列处理应用程序。我们的方法基于混合模拟/数字计算基元,该基元使用掺Ge的非线性光纤和现成的半导体器件优雅地实现了集成并发射神经元的功能。在本文中,我们介绍了我们的光子神经元体系结构,并演示了实现简单光子神经形态电路的可行性,包括可对LIDAR定位有用的ba的听觉定位算法以及小龙虾的尾部跳动逃逸响应。

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