DocumentCode :
661837
Title :
Adaptive joint-polarization carrier phase recovery for optical coherent communication
Author :
Tee-Hiang Cheng ; Dezhao Huang
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
fYear :
2013
fDate :
14-16 Aug. 2013
Firstpage :
811
Lastpage :
814
Abstract :
Coherent communication with multi-level modulation and digital signal processing (DSP) is considered a promising solution to satisfy the exponentially-growing Internet traffic. DSP algorithms with low computational complexity and feed-forward (FF) structure are highly desirable in high baud rate optical coherent receivers. We present a carrier phase recovery algorithm to jointly compensate frequency offset and carrier phase noise based on the widely-used Viterbi and Viterbi phase estimation (VVPE) algorithm with reduced computational complexity and hardware resources. An adaptive joint-polarization frequency offset (FO) estimator is proposed in place of the normal one-time FO estimation for better estimation accuracy and reduced system memory requirement. Simulation and experiment results validate the performance superiority of the proposed algorithm against the classic carrier phase recovery algorithms combination.
Keywords :
Internet; computational complexity; digital signal processing chips; feedforward; frequency estimation; light coherence; optical communication; optical receivers; phase estimation; telecommunication traffic; DSP algorithms; FF structure; FO estimator; Internet traffic; VVPE algorithm; Viterbi phase estimation algorithm; adaptive joint-polarization carrier phase recovery; adaptive joint-polarization frequency offset estimator; baud rate optical coherent receivers; carrier phase noise; classic carrier phase recovery algorithms combination; digital signal processing; estimation accuracy; feed-forward structure; hardware resources; multilevel modulation; one-time FO estimation; optical coherent communication; performance superiority; reduced computational complexity; reduced system memory requirement; widely-used Viterbi algorithm; Digital signal processing; Estimation; Frequency estimation; Optical polarization; Optical receivers; Signal processing algorithms; Carrier phase recovery; Coherent optical communication; digital signal processing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications and Networking in China (CHINACOM), 2013 8th International ICST Conference on
Conference_Location :
Guilin
Type :
conf
DOI :
10.1109/ChinaCom.2013.6694707
Filename :
6694707
Link To Document :
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