光学学报, 2007, 27 (1): 10, 网络出版: 2007-01-22   

相位编码光码分多址系统中的非高斯分析方法

Non-Gaussian Approximation Method for Phase Encoding Optical Code Division Multi-Access System
作者单位
解放军理工大学通信工程学院, 南京 210007
摘要
随着相位编解码器关键技术的突破, 精确分析相位编码光码分多址(OCDMA)系统误码率性能显得十分必要。为了精确分析相位编码光码分多址系统误码率性能, 提出了一种基于判决变量的矩母函数和鞍点近似的非高斯近似方法, 该方法能够精确考虑多址干扰、散粒噪声、热噪声各自的统计特性和相互间的非加性关系。比较了高斯近似、精确计算和文中所提出方法在分析相位编码系统误码率时的计算精度和复杂度, 结果证明该分析方法具有分析精度高、计算复杂度低的优点。
Abstract
With the key technologies breakthrough of phase encoding, it is necessary to analyze the bit error rate performance of phase encoding optical code division multi-access accurately. A non-Gaussian approximation method, based on the moment generation function of the decision statistic and saddle-point approximation, is introduced to evaluate the statistic characteristics of multi-access interference, shot noise and thermal noise and cross-correlation. Mumerical comparison between Gaussian approximation method, accurate calculation and non-Gaussian approximation method, proves the high accuracy and efficiency of the proposed method to analyze the bit error rate of the phase encoding system.
参考文献

[1] . Research of algebra congruent codes used in 2D OCDMA system[J]. IEEE/OSA J. Lightwave Technol., 2003, 21(11): 2557-2564.

[2] Yang Shuwen, Pu Tao, Xu Ming et al.. Research of algebra congruent codes used in tow-dimensional code division multiaddress system[J]. Acta Optica Sinica, 2004, 24(2): 224~229 (in Chinese)
杨淑雯, 蒲涛, 徐铭 等. 用于二维码分多址系统的代数同余码研究[J]. 光学学报, 2004, 24(2): 224~229

[3] Chengbin Shen, Chen Wu, Jinhui Yu et al.. A novel symbol overlapping FFH-OCDMA system[J]. Chin. Opt. Lett., 2004, 2(2): 78~81

[4] Fu Xiaoming, Yu Jinlong, Li Enbang et al.. The study of time/frequency encoding optical code division multi-access communication with Bragg gragting arrays[J]. Acta Optica Sinica, 2004, 24(7): 961~964 (in Chinese)
付晓梅,于晋龙, 李恩邦 等. 利用布拉格光栅阵列实现二维光码分多址的研究[J]. 光学学报, 2004, 24(7): 961~964

[5] Xu Wang, Noaya Wada, Tare Hamanaka et al..10-user truly-asynchronous OCDMA experiment with 511-chip SSFBG en/decoder and SC-based optical threshold[C]. OFC 05, 2005. PDP33

[6] . Coherent optical pulse CDMA systems based on coherent correlation detection[J]. IEEE Transactions on Communications, 1999, 47(2): 261-271.

[7] . Zaccarin, M. Kavehrad. Performance evaluation of optical CDMA systems using non-coherent detection and bipolar codes[J]. IEEE/OSA J. Lightwave Technol., 1994, 12(1): 96-105.

[8] . Direct-detection optical synchronous CDMA systems with double optical hard-limiters using modified prime sequence codes[J]. IEEE J. on Selected Area of Communications, 1996, 14(9): 1879-1887.

[9] Shinichi Tamura, Shigenori Nakano, Kozo Okazaki. Optical code-multiplex transmission by Gold sequences[J]. IEEE/OSA J. Lightwave Technol., 1985, LT-3(1): 121~128

[10] . K. Tang, K. Ben Letaief. Bit-error rate computation of optical CDMA communication system by large deviations theory[J]. IEEE Transactions on Communications, 1996, 46(11): 1422-1428.

[11] G. Elinarsson. Principles of Lightwave Communications[M]. New York Wiley, 1996

蒲涛, 王荣, 李玉权. 相位编码光码分多址系统中的非高斯分析方法[J]. 光学学报, 2007, 27(1): 10. 蒲涛, 王荣, 李玉权. Non-Gaussian Approximation Method for Phase Encoding Optical Code Division Multi-Access System[J]. Acta Optica Sinica, 2007, 27(1): 10.

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