Abstract

Reservoir computing is a bio-inspired approach especially suited for processing time-dependent information. In this work, we propose a hybrid reservoir computing scheme based on parallel photonic time-delay reservoirs with optical injection. The state of virtual nodes are evaluated from the combination of temporal outputs of parallel lasers. It is demonstrated that our proposed hybrid scheme enables photonic reservoir computer with shortened time interval θ and less virtual nodes number N, which could break through the limitation of short external cavity length in miniaturization of reservoir computing with photonic integrated circuits. The computational efficiency of photonic reservoir is numerically evaluated by chaotic time-series prediction task and memory capacity test. State-of-the-art speed performances reach 20 GSa/s with prediction error rate below 0.01. Our scheme bridges the areas of photonic integrated circuits and photonic information processing.

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