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首页> 外文期刊>IEEE Photonics Technology Letters >Micro-Ring Resonator Based Photonic Reservoir Computing for PAM Equalization
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Micro-Ring Resonator Based Photonic Reservoir Computing for PAM Equalization

机译:基于微环谐振器的PAM均衡光子储存器计算

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摘要

Photonic reservoir computing (RC) enables us to introduce artificial neural networks (ANNs) as a deployable hardware-based processing unit beyond the von Neumann architecture. Its unique approach to consider only the output layer weights as adaptive, reduces training complexity and enables the use of ANNs in time-sensitive areas like optical communications. In this paper, we numerically investigate and evaluate the requirements of a photonic RC using an active silicon micro-ring resonator as a photonic integrated circuit (PIC) based reservoir system to compensate for transmission impairments such as chromatic dispersion and nonlinear effects occurring in optical transmission systems. We compare the performance of this RC with results from digital signal processing using Kramers-Kronig reception of distorted PAM-4 symbols from a 56 GBaud WDM transmission experiment over 100 km uncompensated SSMF.
机译:光子储存器计算(RC)使我们能够将人工神经网络(ANNS)引入超出Von Neumann架构之外的可部署的硬件的处理单元。 其独特的方法来仅考虑输出层权重作为自适应,降低训练复杂性,并使ANNS在光通信等时刻区域中使用ANN。 在本文中,我们使用活性硅微环谐振器作为基于光子集成电路(PIC)的储存系统来数值研究和评估光子RC的要求,以补偿光传输中发生的透射损伤和发生的非线性效应。 系统。 我们将此RC的性能与数字信号处理的结果进行比较,使用kramers-kronig接收来自56 Gbaud WDM传输实验的扭曲PAM-4符号的扭曲PAM-4符号。

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