Title :
Single DPLL Joint Carrier Phase Compensation for Few-Mode Fiber Transmission
Author :
van Uden, R.G.H. ; Okonkwo, C.M. ; Sleiffer, V.A.J.M. ; Kuschnerov, M. ; de Waardt, H. ; Koonen, A.M.J.
Author_Institution :
COBRA Res. Inst., Eindhoven Univ. of Technol., Eindhoven, Netherlands
Abstract :
A carrier phase estimation and compensation algorithm using a digital phase locked loop is proposed which exploits the common-mode impairment from the shared local oscillator at the receiver side in a few-mode fiber transmission system. We verify that the proposed algorithm is more tolerant to phasemismatches than earlier work. The carrier phase estimation (CPE) scheme is evaluated for a 3 × 112 Gbit/s dual polarization quadrature phase shift keying mode division multiplexed transmission over 80 km including an in-line multimode erbium doped fiber amplifier. The digital signal processing computational complexity is reduced in comparison to a traditional CPE stage. In addition, the proposed scheme is shown to perform similarly with respect to the 3.8 × 10-3forward error correcting limit optical signal to noise ratio tolerance of the traditional CPE scheme.
Keywords :
communication complexity; digital phase locked loops; digital signal processing chips; erbium; forward error correction; optical fibre amplifiers; optical fibre communication; optical fibre polarisation; optical noise; optical receivers; phase estimation; quadrature phase shift keying; carrier phase compensation algorithm; carrier phase estimation algorithm; common-mode impairment; digital phase locked loop; digital signal processing computational complexity; dual polarization quadrature phase shift keying mode division multiplexed transmission; few-mode fiber transmission system; forward error correcting limit; in-line multimode erbium doped fiber amplifier; local oscillator; optical signal-to-noise ratio tolerance; receiver side; single DPLL joint carrier phase compensation; traditional CPE scheme; Coherent communications; Digital signal processing; Space-division multiplexing;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2013.2263790