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A performance investigation of SAC-OCDMA system based on a spectral efficient 2D cyclic shift code for next generation passive optical network

机译:基于下一代无源光网络的光谱有效2D循环换档码的SAC-OCDMA系统的性能研究

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摘要

A two dimensional spectral/spatial cyclic shift (2D-CS) optical code division multiple access (OCDMA) systems is proposed for a potentially next generation passive optical network (NG-PON) implementation called (2D-CS NG-OCDMA-PON) system. The2D-CS proposed code is characterized by a high capacity and a zero cross correlation property leads to completely eliminating the multiple access interference (MAI) effect that is considered as the main OCDMA system drawback. Firstly, the 2D-CScode construction is investigated from 1D-CS code. Secondly, a system description is provided by exhibiting the transmitter and receiver architecture in the PON context. Analytical analysis reveals that our proposed 2D-CScode outperforms similar codes such as perfect difference (2D-PD) and dynamic cyclic shift (2D-DCS) codes in terms of spectral efficiency, simultaneous network subscribers and data bit rate. In addition, based on numerical analysis 2D-CS NG-OCDMA-PON system shows a good system performance by means of avery low BER and a high Q-factor values equal to 10~(-26) and 10.41 dB, respectively. Likewise, for four users and free-amplification the achievable reach ability distance of the NG-OCDMA-PON system is 63.21 km, 43.57 km and 33.2 km while Q-factor is equal to 6 dB at a bit rate of 622 Mb/s, 1 Gb/s and 1.5 Gb/s, respectively. On the other side, according to the system setup the number of single mode fiber (SMF) is reduced to the half compared to other 2D-OCDMA-PON systems based on enhanced multi diagonal (EMD) and single weight ZCC (SWZCC) codes.
机译:为潜在的下一代无源光网络(NG-PON)实现提出了二维光谱/空间循环移位(2D-CS)光码分款多址(OCDMA)系统,称为(2D-CS NG-OCDMA-PON)系统。 The2D-CS所提出的代码的特征在于高容量,零互相关性能导致完全消除被认为是主要的OCDMA系统缺点的多址干扰(MAI)效应。首先,从1D-CS代码调查了2D-CSCode结构。其次,通过在PON上下文中展示发射机和接收机架构来提供系统描述。分析分析表明,我们所提出的2D-CSCode在频谱效率,同时网络用户和数据比特率方面优于完美差异(2D-PD)和动态循环移位(2D-DCS)代码等类似的代码。另外,基于数值分析,2D-CS NG-OCDMA-PON系统通过vervy低BER和高Q因子值分别显示出良好的系统性能,分别等于10〜(-26)和10.41dB。同样,对于四个用户和自由放大,NG-OCDMA-PON系统可实现的达到能力距离为63.21km,43.57公里和33.2 km,而Q系数以622 MB / s的比特率等于6 dB,分别为1 GB / s和1.5 gb / s。另一方面,根据系统设置,与基于增强的多对角线(EMD)和单重ZCC(SWZCC)码的其他2D-OCDMA-PON系统相比,单模光纤(SMF)的数量减少到一半。

著录项

  • 来源
    《Optical and quantum electronics》 |2021年第10期|569.1-569.28|共28页
  • 作者单位

    Technology of Communication Laboratory (LTC) Electronics Departement Dr. Tahar Moulay University of Saida Saida Algeria;

    Technology of Communication Laboratory (LTC) Electronics Departement Dr. Tahar Moulay University of Saida Saida Algeria;

    Computational Physics of Materiasl Laboratory Djillali Liabes University of Sidi Bel-Abbes 22000 SidiBelAbbes Algeria Department of Electronics Faculty of Technology Dr. Moulay Tahar University of Saida 20000 Saida Algeria;

    Scientific Instrumentations Laboratory (LIS) Electronics Department Ferhat Abbas University of Setif 1 Setif Algeria;

    Laboratory of SER'COM Tunisia Polytechnic School Carthage University 1054 Tunis Tunisia Department of IT College of Informatics and Computing Saudi Electronic University Medina 42376 Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cyclic shift code; Multiple access interference; Phase induced intensity noise; Two dimensional; Passive optical network; Q-factor;

    机译:循环移位代码;多次访问干扰;相位诱导的强度噪声;二维;被动光网络;Q系数;

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