MAP detection for impairment compensation in coherent WDM systems


Autoria(s): Zhao, Jian A.; Ellis, Andrew D.
Data(s)

03/08/2009

Resumo

We propose a novel recursive-algorithm based maximum a posteriori probability (MAP) detector in spectrally-efficient coherent wavelength division multiplexing (CoWDM) systems, and investigate its performance in a 1-bit/s/Hz on-off keyed (OOK) system limited by optical-signal-to-noise ratio. The proposed method decodes each sub-channel using the signal levels not only of the particular sub-channel but also of its adjacent sub-channels, and therefore can effectively compensate deterministic inter-sub-channel crosstalk as well as inter-symbol interference arising from narrow-band filtering and chromatic dispersion (CD). Numerical simulation of a five-channel OOK-based CoWDM system with 10Gbit/s per channel using either direct or coherent detection shows that the MAP decoder can eliminate the need for phase control of each optical carrier (which is necessarily required in a conventional CoWDM system), and greatly relaxes the spectral design of the demultiplexing filter at the receiver. It also significantly improves back-to-back sensitivity and CD tolerance of the system.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/18029/1/MAP_detection_for_impairment_compensation.pdf

Zhao, Jian A. and Ellis, Andrew D. (2009). MAP detection for impairment compensation in coherent WDM systems. Optics Express, 17 (16), pp. 13395-13401.

Relação

http://eprints.aston.ac.uk/18029/

Tipo

Article

PeerReviewed