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Photonic Reservoir Computing with Coupled Semiconductor Optical Amplifiers

机译:具有耦合半导体光放大器的光子储存器计算

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We propose photonic reservoir computing as a new approach to optical signal processing and it can be used to handle for example large scale pattern recognition. Reservoir computing is a new learning method from the field of machine learning. This has already led to impressive results in software but integrated photonics with its large bandwidth and fast nonlinear effects would be a high-performance hardware platform. Therefore we developed a simulation model which employs a network of coupled Semiconductor Optical Amplifiers (SOA) as a reservoir. We show that this kind of photonic reservoir performs even better than classical reservoirs on a benchmark classification task.
机译:我们将光子储存器计算为光学信号处理的新方法,并且它可用于处理例如大规模的模式识别。水库计算是一种来自机器学习领域的新学习方法。这已导致软件中令人印象深刻的结果,但具有大带宽和快速非线性效果的集成光子,这将是一个高性能的硬件平台。因此,我们开发了一种模拟模型,该模拟模型采用耦合半导体光放大器(SOA)作为储存器的网络。我们表明,这种光子储存器比基准分类任务的经典水库更好地表现更好。

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