Evaluation Performance of Two-Dimensional Multi-Diagonal Code Using Polarization and Wavelength of OCDMA System

H. Z. Dhaam, F. Ali, Ahmed G. Wadday
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引用次数: 1

Abstract

In this paper, a new encoder/decoder technique has employed two orthogonal polarization states (vertical and horizontal) of a two-dimensional optical code, which combined polarization and wavelength scheme (p/w). This technique employed in order to increase the number of users in the FTTH network. In addition, Optical Fiber Systems (OFS) and Free Space Optics (FSO) scenarios were utilized with different Spectral Amplitude Coding Optical Code Division Multiple Access (SAC-OCDMA) codes. The FTTH network based on incoherent SAC-OCDMA is tested by using the One and Two Dimensional Multi-Diagonal (1D-MD, 2D-MD) codes and 1D and 2D Zero Cross Correlation (ZCC) codes. The results show that the number of the total supported homes for the 2D codes is doubled as a comparison with 1D codes. As well as, the simulation results show the performance of MD code is better presented than ZCC in both OFS and FSO scenarios
利用OCDMA系统的偏振和波长评价二维多对角码的性能
本文提出了一种新的编码器/解码器技术,利用二维光码的两种正交偏振态(垂直和水平),将偏振和波长方案(p/w)相结合。采用这种技术是为了增加FTTH网络中的用户数量。此外,光纤系统(OFS)和自由空间光学(FSO)场景使用不同的频谱幅度编码光码分多址(SAC-OCDMA)码。采用一维和二维多对角线(1D- md, 2D- md)码以及一维和二维零互相关(ZCC)码对基于非相干SAC-OCDMA的FTTH网络进行了测试。结果表明,与一维代码相比,二维代码的总支持房屋数量增加了一倍。仿真结果表明,无论在OFS还是FSO场景下,MD码的性能都优于ZCC码
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