BER Reduction for mQAM High-Speed Tranmission in Optical Fiber Networks Using Convalutional BCH, RS and LDPC Error Correcting Codes

Serge Roland Sanou, F. Zougmore, Z. Koalaga, M. B. Kebre
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Abstract

A comparative study of digital m-ary Quadrature Amplitude Modulation (mQAM) channel coding signals for optical high-speed transmission is presented in this article. The needs to transmit information at high speed are topical and relevant to the images, the sounds, and data of any kind, etc. The photonic networks are the subject of much research on the application in optical domain of techniques already used in wireless networks such as mQAM digital modulations and error correcting codes. The mQAM digital modulations interest lies in the fact that they are now being used as subchannel modulation techniques in other advanced modulations such as Othogonal Frenquency Division Multiplexing (OFDM). Indeed, OFDM using mQAM modulation seems to be a good candidate in high speed networks. This allows considering transmission systems at very high speeds in optical transmission networks. The performance of channel coding is based on the estimation of the Bit Error Rate (BER) implementing techniques of Convolutional codes, Bose Chaudhuri Hocquenghem (BCH) codes, Reed-Solomon (RS) codes and Low Density Parity Check (LDPC) codes in a 10Gbps transmission. The BER is estimated as a function of the OSNR and also as a function of the transmission distance. The study was conducted in a software cosimulation environment with VPITransmissionMaker and Matlab software. The simulation results showed that error correcting codes and particularly LDPC codes are effective and provide satisfactory solutions to reduce the BER by fighting against optical transmission channel disturbances such as chromatic dispersion and nonlinearities. Keywords : mQAM, broadband, BER, optical fiber, error correcting codes.
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利用传统BCH、RS和LDPC纠错码降低光纤网络中mQAM高速传输误码率
本文对用于光高速传输的数字正交调幅(mQAM)信道编码信号进行了比较研究。高速传输信息的需求与图像、声音和任何类型的数据等相关。在光学领域中,诸如mQAM数字调制和纠错码等已经应用于无线网络的技术在光子网络中的应用是许多研究的主题。mQAM数字调制的兴趣在于,它们现在被用作其他高级调制(如正交频分复用(OFDM))中的子信道调制技术。事实上,在高速网络中,使用mQAM调制的OFDM似乎是一个很好的选择。这允许在光传输网络中考虑非常高速的传输系统。信道编码的性能基于卷积码、Bose Chaudhuri Hocquenghem (BCH)码、Reed-Solomon (RS)码和低密度奇偶校验(LDPC)码在10Gbps传输中的误码率(BER)实现技术的估计。误码率估计为OSNR的函数和传输距离的函数。研究是在VPITransmissionMaker和Matlab软件的软件协同仿真环境下进行的。仿真结果表明,纠错码,特别是LDPC码是有效的,并提供了令人满意的解决方案,以降低误码率的光传输信道干扰,如色散和非线性。关键词:mQAM,宽带,误码率,光纤,纠错码。
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