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Review on developments in all-optical spectral amplitude coding techniques

机译:全光光谱幅度编码技术的发展回顾

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摘要

The focus of this work is to consolidate a review of accomplished research in the field of optical code division multiple accesses (OCDMA), to outline the state-of-the-art comparison, and to recognize the prominent trends as well as limitations. Code division multiple access (CDMA) has prospered as a vital solution for numerous applications such as cellular mobile communication-based wireless network technology and wired/wireless local area networks that include areas of unlicensed industry, medicine, and science. Due to the commercial utilization of the various advantages of CDMA, it has raised the matter of whether optical technology reliant communications provide the noteworthy advantages to optical networks as well as what are the technologies that facilitate optical chip-based (code division) networks. Aforementioned matter has been addressed in the context of the incorporation of OCDMA in the systems through several experiments of laboratory-based test-bed investigations, field trials, and simulation analysis of multiple users in the recent research works. The performance of OCDMA has an edge over wavelength division multiplexing and offers an unmatched capacity that is seen through simulations. To cater the explosive expansions in internet application, different spectral amplitude codes have been proposed till now. We present a review of the different spectral amplitude codes based on the reported works in spectral amplitude code OCDMA systems. For the purpose of state-of-the-art comparison, parameters considered are data speeds, advanced modulation formats, bit error rate, extinction ratio, decision algorithms, photonic efficiencies of photodetectors, frequency bands, signal-to-noise ratio, forward error correction, photodetector noises, etc., and simulations are carried out in similar input environments. We explore the advantages/limitations of the spectral amplitude codes, recent progress in the technology, practical works on spectral amplitude coding (SAC) throughout the world, encryption-decryption techniques, all-optical methods, literature comparison, future scope, and applications of the SAC-OCDMA codes.
机译:这项工作的重点是巩固对光码分多址(OCDMA)领域已完成研究的回顾,概述最新技术比较,并认识到突出的趋势和局限性。码分多址(CDMA)已成为众多应用的重要解决方案,例如基于蜂窝移动通信的无线网络技术和包括无执照产业,医学和科学领域的有线/无线局域网。由于CDMA的各种优点的商业利用,它引起了以下问题:依赖光学技术的通信是否为光学网络提供了显着的优势,以及促进基于光学芯片的(码分)网络的技术是什么。在最近的研究工作中,通过将基于实验室的试验台调查,现场试验以及对多个用户进行仿真分析的多个实验,已经在将OCDMA集成到系统中的情况下解决了上述问题。 OCDMA的性能在波分复用方面具有优势,并提供了无与伦比的容量,这是通过仿真发现的。为了迎合互联网应用的爆炸性扩展,迄今为止已经提出了不同的频谱幅度代码。我们基于频谱幅度代码OCDMA系统中已报道的工作介绍了不同的频谱幅度代码。为了进行最先进的比较,考虑的参数包括数据速度,高级调制格式,误码率,消光比,决策算法,光电探测器的光子效率,频带,信噪比,前向误差校正,光电探测器的噪声等,并在类似的输入环境中进行仿真。我们将探讨频谱幅度编码的优点/局限性,技术的最新进展,世界范围内频谱幅度编码(SAC)的实际工作,加密解密技术,全光方法,文献比较,未来范围以及其应用SAC-OCDMA代码。

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