Study on the QC-LDPC code in optical communication system based on the FOPA

被引:0
|
作者
机构
[1] [1,Zheng, Jian
[2] Bie, Hong-Xia
[3] Zhang, Xue-Kun
[4] Lei, Chun-Yang
[5] Fang, Ming
[6] Li, Sha
[7] Kang, Zhe
来源
Zheng, J. (dotopala@hotmail.com) | 1600年 / Board of Optronics Lasers, No. 47 Yang-Liu-Qing Ying-Jian Road, Tian-Jin City, 300380, China卷 / 25期
关键词
Fibers - Satellite communication systems - Amplification - Convolutional codes - Forward error correction - Optical fiber communication - Optical parametric amplifiers;
D O I
暂无
中图分类号
学科分类号
摘要
Optical signal would be distorted during transmission in fiber caused by dispersion, and the non-ideal optical amplification would also lead to error bits.In order to restrain the effects, in this paper, quasi-cyclic low density parity check (QC-LDPC) codes are studied in a 40 Gbit/s non-return-to-zero differential phase shift lceying (NRZ-DPSK) signal transmission system based on fiber-based optical parametric amplification (FOPA) so that the performance of the optical communication system could be improved.The results indicate that under 10 km fiber length, the bit error rate (BER) can achieve 10-11 because of the QC-LDPC codes with the same code length but different code rates, and then the different fiber lengths are tested for the same QC-LDPC codes, the BER can achieve 10-11 also. QC-LDPC codes constructed by the maximization of the shortest cycle algorithm can correct the bits errors caused by dispersion, nonlinearity, and pump jitter, and consequently the communication quality can be improved.
引用
收藏
相关论文
共 50 条
  • [31] Research on a novel construction method of full rank QC-LDPC codes for optical communication systems
    Equipment Management and Safety Engineering, College of Air Force Engineering University, Xi'an
    Shaanxi
    710051, China
    Zhongguo Jiguang, 10
  • [32] Detecting Cycles of Length 10 in the Tanner Graph of a QC-LDPC Code Based on Protograph Analysis
    A. V. Kharin
    K. N. Zavertkin
    A. A. Ovinnikov
    Problems of Information Transmission, 2020, 56 : 317 - 331
  • [33] Enhancement of Steganography Scheme based on QC-LDPC Codes
    Gautam, Akansha
    Gupta, Richa
    2015 INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING AND COMMUNICATION (ICSC), 2015, : 10 - 13
  • [34] Research on the Implementation of QC-LDPC Decoder Based on FPGA
    Zhang, Yang
    Wang, Xiumin
    Lou, Xizhong
    Yang, Shihua
    Chen, Haowei
    ICMS2010: PROCEEDINGS OF THE THIRD INTERNATIONAL CONFERENCE ON MODELLING AND SIMULATION, VOL 6: MODELLING & SIMULATION INDUSTRIAL ENGINEERING & MANAGEMENT, 2010, : 274 - 277
  • [35] Detecting Cycles of Length 10 in the Tanner Graph of a QC-LDPC Code Based on Protograph Analysis
    Kharin, A.V.
    Zavertkin, K.N.
    Ovinnikov, A.A.
    1600, Pleiades journals (56): : 317 - 331
  • [36] Detecting Cycles of Length 8 in the Tanner Graph of a QC-LDPC Code Based on Protograph Analysis
    A. V. Kharin
    K. N. Zavertkin
    A. A. Ovinnikov
    Problems of Information Transmission, 2020, 56 : 173 - 184
  • [37] The Encryption Scheme with Data Compression Based on QC-LDPC
    Han, Yiliang
    SECURITY, PRIVACY, AND ANONYMITY IN COMPUTATION, COMMUNICATION, AND STORAGE, 2016, 10066 : 156 - 163
  • [38] Irregular QC-LDPC Based Multi-level Coded Modulation Scheme for the Next Generation Optical Communication Systems
    Wang, Dongdong
    Wang, Liqian
    Chen, Xue
    Ju, Chen
    Wang, Zhirong
    Fei, Aimei
    Wang, Huitao
    Zhang, Qi
    2017 OPTO-ELECTRONICS AND COMMUNICATIONS CONFERENCE (OECC) AND PHOTONICS GLOBAL CONFERENCE (PGC), 2017,
  • [39] Detecting Cycles of Length 8 in the Tanner Graph of a QC-LDPC Code Based on Protograph Analysis
    Kharin, A., V
    Zavertkin, K. N.
    Ovinnikov, A. A.
    PROBLEMS OF INFORMATION TRANSMISSION, 2020, 56 (02) : 173 - 184
  • [40] Construction of QC-LDPC Codes Based On PSO Algorithm
    Yang, Yang
    Xiao, Yang
    2011 IET 4TH INTERNATIONAL CONFERENCE ON WIRELESS, MOBILE & MULTIMEDIA NETWORKS (ICWMMN 2011), 2011, : 118 - 122