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Effective Design of Optical Code-Division Multiple Access Network Using Random Diagonal Codes

机译:使用随机对角线码的有效设计光学码分割多址网络

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In this paper we study the use of a new code called Random Diagonal (RD) code for Spectral Amplitude Coding (SAC) optical Code Division Multiple Access (CDMA) networks, using Fiber Bragg-Grating (FBG), FBG consists of a fiber segment whose index of reflection varies periodically along its length. RD code is constructed using code level and data level, one of the important properties of this code is that the cross correlation at data level is always zero, which means that Phase intensity Induced Phase (PIIN) is reduced. We find that the performance of the RD code will be better than Modified Frequency Hopping (MFH) and Hadamard codes. It has been observed through simulation and theoretical results that BER for RD code perform significantly better than other codes. Proof-of-principle simulations of encoding with 3 channels, and 10 Gbps data transmission have been successfully demonstrated together with FBG decoding scheme for canceling the code level from SAG-signal.
机译:在本文中,我们研究了使用一种名为随机对角线(RD)代码的新代码进行频谱幅度编码(SAC)光码分割多址(CDMA)网络,使用光纤布拉格光栅(FBG),FBG由光纤段组成其反射指数沿其长度周期性周期性周期性。使用代码级别和数据级别构建RD代码,该代码的一个重要属性是数据电平的交叉相关始终为零,这意味着减小了相强度诱导的相位(PIIN)。我们发现RD代码的性能比修改的跳频(MFH)和Hadamard代码更好。它通过模拟和理论结果观察到RD代码比其他代码更好地执行。使用3个通道的编码原理验证模拟,以及10 Gbps数据传输,以及FBG解码方案,用于从SAG信号中取消代码级别的FBG解码方案。

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