Chinese Journal of Lasers, Volume. 41, Issue 1, 105002(2014)

Performance Enhancement of 100 Gb/s Polarization Division Multiplexing Differenctial Quadrature Phase Shift Keying Optical Communication System with π-Rotation Low-Density Parity-Check Codes

Bi Wei*, Xi Lixia, Zhang Xiaoguang, and Zhang Wenbo
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    References(21)

    [1] [1] Y Zhang, M Arabaci, I B Djordjevic. Evaluation of four-dimensional nonbinary LDPC-coded modulation for next-generation long-haul optical transport networks[J]. Opt Express, 2012, 20(8): 9296-9301.

    [2] [2] J Fu, M Arabaci, I B Djordjevic, et al.. First experimental demonstration of nonbinary LDPC-coded modulation suitable for high-speed optical communications[C]. IEEE Optical Fiber Communication Conference and Exposition (OFC/NFOEC), 2011 and the National Fiber Optic Engineers Conference, 2011. 1-3.

    [3] [3] M Tomizawa, Y Yamabayashi. Parallel FEC code in high-speed optical transmission systems[J]. Electron Lett, 1999, 35(16): 1367-1368.

    [4] [4] L Xi, H Chen, M Li, et al.. Low-density parity-check codes used for polarization mode dispersion mitigation in 40-Gb/s optical fiber system[C]. IET International Conference on Advanced Infocom Technology, 2011 (ICAIT 2011), 2011. 1-3.

    [5] [5] S Y Chung, G D Forney Jr, T J Richardson, et al.. On the design of low-density parity-check codes within 0.0045 dB of the Shannon limit[J]. Communications Letters, IEEE, 2001, 5(2): 58-60.

    [6] [6] M Arabaci, I B Djordjevic, R Saunders, et al.. High-rate nonbinary regular quasi-cyclic LDPC codes for optical communications[J]. J Lightwave Technol, 2009, 27(23): 5261-5267.

    [7] [7] Yuan Jianguo, Wang Wang, Liang Tianyu. A novel construction method of QC-LDPC codes for high-speed long-haul optical communication systems[J]. Journal of Optoelectronics·Laser, 2012, 23(5): 906-909.

    [8] [8] J Yuan, Y Xie, L Wang, et al.. A novel concatenated code based on the improved SCG-LDPC code for optical transmission systems[J]. Optoelectronics Letters, 2013, 9(1): 42-44.

    [9] [9] J G Yuan, Q Z Tong, L Xu. Study on ameliorating the SCG-LDPC code for high-speed optical communication systems[J]. Advanced Materials Research, 2012, 571: 224-228.

    [10] [10] Lixia Xi, Lei Yang, Haoran Chen, et al.. PMD mitigation by LDPC codes with polarization scramblers[J]. Chin Opt Lett, 2012, 10(s2): s20609.

    [11] [11] S Mumtaz, G Rekaya-Ben Othman, Y Jaouen. Quasi-cyclic LDPC based on PEG construction for optical communications[C]. Signal Processing in Photonic Communications, 2011. SPWB2.

    [12] [12] Xu Tao. Research on Rate-Compatible LDPC Coding for Free Space Optical Communication[D]. Changchun: Changchun University of Science and Technology, 2011.

    [13] [13] B Vasic, I B Djordjevic. Affine geometry low-density parity check codes in long-haul optical communications[J]. Journal of Optical Communications, 2012, 23(3): 50-53.

    [14] [14] P Kaur, D Dhawan, V K Jain, et al.. Study on FEC schemes for optical communication systems[C]. IEEE 2013 National Conference on Communications (NCC), 2013. 1-5.

    [15] [15] R Echard, S C Chang. The π-rotation low-density parity check codes[C]. IEEE 2001 Global Telecommunications Conference, (GLOBECOM′01), 2001, 2: 980-984.

    [16] [16] R Echard, S C Chang. Irregular π-rotation LDPC codes[C]. IEEE 2002 Global Telecommunications Conference, (GLOBECOM′02), 2002, 2: 1274-1278.

    [17] [17] R Echard, S C Chang. Design considerations and performance analysis of good π-rotation LDPC codes[C]. IEEE 2006 Wireless Telecommunications Symposium, (WTS′06), 2006. 1-5.

    [18] [18] Li Dong, Yin Suozhu. Performance analysis of π-rotation LDPC codes in MB-OFDM ultra-wideband system[J]. Guangxi Communication Technology, 2006, 4: 39-43.

    [19] [19] R Echard, S C Chang. Good high-rate π-rotation LDPC codes based on novel puncturing techniques[C]. IEEE 2010 International Symposium on Information Theory and its Applications (ISITA), 2010. 1-6.

    [20] [20] Yuan Jianguo, Mao Youju, Ye Wenwei. Analysis on channel model and construction of FEC code type for optical communication systems[J]. Semiconductor Optoelectronics, 2008, 29(4): 571-575.

    [21] [21] D Fafchamps, G Rodriguez-Guisantes, P Gallion. Chi-square statistical models as a good base for the optimisation of optical communication systems[C]. IEEE 2008 International Conference on Photonics in Switching, 2008. 1-2.

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    Bi Wei, Xi Lixia, Zhang Xiaoguang, Zhang Wenbo. Performance Enhancement of 100 Gb/s Polarization Division Multiplexing Differenctial Quadrature Phase Shift Keying Optical Communication System with π-Rotation Low-Density Parity-Check Codes[J]. Chinese Journal of Lasers, 2014, 41(1): 105002

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    Paper Information

    Category: Optical communication

    Received: Jul. 16, 2013

    Accepted: --

    Published Online: Dec. 24, 2013

    The Author Email: Wei Bi (biwei2013bupt@163.com)

    DOI:10.3788/cjl201441.0105002

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