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Modulation format identification in fiber communications using single dynamical node-based photonic reservoir computing
DOI:10.1364/PRJ.409114.png)
Abstract
En 中文
We present a simple approach based on photonic reservoir computing (P-RC) for modulation format identification (MFI) in optical fiber communications. Here an optically injected semiconductor laser with self-delay feedback is trained with the representative features from the asynchronous amplitude histograms of modulation signals. Numerical simulations are conducted for three widely used modulation formats (on-off keying, differential phase-shift keying, and quadrature amplitude modulation) for various transmission situations where the optical signal-to-noise ratio varies from 12 to 26 dB, the chromatic dispersion varies from -500 to 500 ps/nm, and the differential group delay varies from 0 to 20 ps. Under these situations, final simulation results demonstrate that this technique can efficiently identify all those modulation formats with an accuracy of >95% after optimizing the control parameters of the P-RC layer such as the injection strength, feedback strength, bias current, and frequency detuning. The proposed technique utilizes very simple devices and thus offers a resource-efficient alternative approach to MFI. (C) 2020 Chinese Laser Press
Keywords:
SEMICONDUCTOR-LASER SUBJECT
DOUBLE OPTICAL FEEDBACK
NEURAL-NETWORK
PERFORMANCE
CHAOS
RECOGNITION
PREDICTION
Journal
IF:
7.2
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2.4K
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