Optoelectronics Letters, Volume. 16, Issue 5, 373(2020)

A novel phase noise compensation algorithm combining the DF algorithm with LCSC algorithm in CO-OFDM systems

Jian-guo YUAN*... Shu-chong NAN, Shang-jin LI and Fu-qiang ZHAO |Show fewer author(s)
Author Affiliations
  • Chongqing Key Laboratory of Photoelectronic Information Sensing and Transmitting Technology, Chongqing University of Posts and Telecommunications, Chongqing 400065, China
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    A novel phase noise (PN) compensation algorithm based on the decision feedback (DF) algorithm and the linear combination self cancellation (LCSC) algorithm is proposed to improve the system performance degradation caused by laser linewidth in coherent optical orthogonal frequency division multiplexing (CO-OFDM) systems. In this proposed LCSC-DF algorithm, the LCSC algorithm is used to precode the subcarrier information at the transmitter and decode the demodulation information and inter-carrier interference (ICI) related information at the receiver. And then the pilot information is used to obtain the final compensation signal by the improved DF algorithm. The simulation results show that the PN compensation performance of the proposed LCSC-DF algorithm is better than that of the DF algorithm. Furthermore, with the increase of the signal to noise ratio (SNR), its bit error rate (BER) performance approaches to that of the SC-DF algorithm at the larger PN linewidth. The subcarriers utilization ratio of the proposed algorithm is higher than that of the SC-DF algorithm. As a result, the proposed algorithm can effectively improve the performance of the system.

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    YUAN Jian-guo, NAN Shu-chong, LI Shang-jin, ZHAO Fu-qiang. A novel phase noise compensation algorithm combining the DF algorithm with LCSC algorithm in CO-OFDM systems[J]. Optoelectronics Letters, 2020, 16(5): 373

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    Paper Information

    Received: Sep. 16, 2019

    Accepted: Dec. 2, 2019

    Published Online: Dec. 25, 2020

    The Author Email: Jian-guo YUAN (yuanjg@cqupt.edu.cn)

    DOI:10.1007/s11801-020-9149-3

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