Capacity and security enhancement in optical CDMA systems

G. Attia, I. El Dokany, A. Mohamed
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引用次数: 1

Abstract

Of all kinds of multiple access techniques, optical code division multiple access (OCDMA) is considered the strongest candidates to challenge the rapid evolution of optical communication systems to support multimedia. However, the harmful multiple access interference (MAI) and all forms of noise such as optical amplified spontaneous emission (ASE) noise, electronic receiver noise and photodiode (PD) shot noise are the limiting factors for the system capacity. The current paper, presents an advanced modulation scheme to enhance the capacity of OCDMA networks using hybrid frequency-polarization shift keying, where the polarization can be utilized to double the communication channel. Moreover, we will adopt the direct detection scheme rather than coherent detection to fulfill (i) the system simplicity, (ii) cost effectiveness, (iii) high immunity to laser noise and (iv) insensitivity to self and cross phase modulations caused by fiber nonlinearity. The simulated computer results for the proposed scheme indicate the substantial enhancement in the performance of the system in terms of ȁcapacity enhancement”. Where, the proposed scheme could mitigate the effect of MAI, and all forms of noise in the network. Moreover, approved its power efficient and provides secure communication.
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光CDMA系统的容量和安全性增强
在各种多址技术中,光码分多址(OCDMA)被认为是挑战光通信系统向多媒体支持的快速发展的最有力的候选技术。然而,有害的多址干扰(MAI)和各种形式的噪声,如光放大自发发射(ASE)噪声、电子接收机噪声和光电二极管(PD)弹丸噪声是限制系统容量的因素。本文提出了一种先进的调制方案,利用混合频率-极化移位键控来提高OCDMA网络的容量,其中极化可以使通信信道加倍。此外,我们将采用直接检测方案而不是相干检测来实现(i)系统简单性,(ii)成本效益,(iii)对激光噪声的高抗扰性以及(iv)对光纤非线性引起的自相位和交叉相位调制不敏感。该方案的计算机模拟结果表明,系统的性能有了实质性的提高,“ȁcapacity增强”。其中,所提出的方案可以减轻MAI的影响,以及网络中各种形式的噪声。此外,它的节能和提供安全的通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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