Reservoir computing is a brain inspired approach for information processing, well suited to analogue implementations. We report a photonic implementation of a reservoir computer that exploits frequency domain multiplexing to encode neuron states. The system processes 25 comb lines simultaneously (i.e. 25 neurons), at a rate of 20 MHz. We illustrate performances on two standard benchmark tasks: channel equalization and time series forecasting. We also demonstrate that frequency multiplexing allows output weights to be implemented in the optical domain, through optical attenuation. We discuss the perspectives for high speed high performance low footprint implementations.
翻译:储量计算是一种大脑激发的信息处理方法,非常适合模拟实施。我们报告了一个储油层计算机的光学应用,该计算机利用频域多路转换来编码神经状态。该系统同时处理25条梳子线(即25个神经元),速度为20兆赫。我们举例说明了两个标准基准任务的业绩:频道平均和时间序列预报。我们还表明,频率多路转换允许通过光学减速在光学领域执行输出权重。我们讨论了高速高性能低足迹执行的视角。