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A photonic neuromorphic computational primitive for complex high bandwidth signal processing

机译:复杂高带宽信号处理的光子神经形态计算原语

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The photonic computational primitive presented in this paper is the first all optical implementation of a spiking leaky integrate and fire (LIF) neuron. Due to its hybrid analog/digital nature it is capable of overcoming both the noise problems of purely analog optical devices and the limited computational capabilities of individual digital optical devices. It is possible to chain together large numbers of these devices, each individually capable of significant computation, to implement far more complex computations on high bandwidth signals than is currently possible. This device represents both a technology capable of scaling the complexity of computations that can be performed on high-bandwidth signals, and a contribution to the nacent field of photonic neuromorphic engineering. This technology applies to a wide range of avionics applications in which data bandwidth is too high or the response delay too short for electronic processing.
机译:本文介绍的光子计算原始是首先掺入漏洞的所有光学实现,整合和火(LIF)神经元。由于其混合模拟/数字性质,它能够克服纯粹模拟光学装置的噪声问题以及各个数字光学器件的有限计算能力。可以将大量的这些器件连锁在一起,每个这些设备可以单独计算,以实现比当前可能的高带宽信号上的更复杂的计算。该装置代表了能够缩放可以在高带宽信号上执行的计算复杂性的技术,以及对光子神经形态工程的界面的贡献。该技术适用于广泛的航空电子应用应用,其中数据带宽过高或响应延迟太短而无法电子处理。

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