A 24-node array of diffractively coupled VCSEL lasers serves as an optical reservoir computer, reaching below 1% bit error on 2-bit XOR and 3-bit header recognition, and RMSE 0.067 on 2-bit DAC.
Optoelectronic Reservoir Computing
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abstract
Reservoir computing is a recently introduced, highly efficient bio-inspired approach for processing time dependent data. The basic scheme of reservoir computing consists of a non linear recurrent dynamical system coupled to a single input layer and a single output layer. Within these constraints many implementations are possible. Here we report an opto-electronic implementation of reservoir computing based on a recently proposed architecture consisting of a single non linear node and a delay line. Our implementation is sufficiently fast for real time information processing. We illustrate its performance on tasks of practical importance such as nonlinear channel equalization and speech recognition, and obtain results comparable to state of the art digital implementations.
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Experimental reservoir computing with diffractively coupled VCSELs
A 24-node array of diffractively coupled VCSEL lasers serves as an optical reservoir computer, reaching below 1% bit error on 2-bit XOR and 3-bit header recognition, and RMSE 0.067 on 2-bit DAC.