A Distributed Asynchronous Transmission Access Strategy for Optical Single-Hop LANs: An Analytical Performance Study

IF 0.6 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS Journal of Communications Software and Systems Pub Date : 2022-01-01 DOI:10.24138/jcomss-2021-0162
P. Baziana
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Abstract

— In this paper, we introduce an optical passive network architecture suitable for wavelength division multiplexing local area networks (LANs) which use a separate control wavelength. The data wavelengths are organized into several sets, while the access rights over them are distributedly determined aiming to totally expunge the packets collisions on the wavelengths and at destination. The proposed access algorithm pertains to the asynchronous transmission schemes. Thus, it is simple enough since it does not require any synchronization among the stations, providing high efficiency especially under high data rates (100 Gbps and beyond). The performance is evaluated through exhaustive analysis, whilst closed mathematical formulas provide the performance measures. The comparative study proves that the proposed wavelengths organization into sets strategy along with the access scheme significantly improves the performance. Especially, the throughput improvement is proven to be higher as the number of sets increases, and more than 100% even by organizing the wavelengths into only two sets, for diverse numbers of data wavelengths, data wavelengths sets and data packets size. Finally, the proposed study could be applied to optical passive single-hop LANs such as intra-rack data center networks or local institutional or enterprise networks.
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光单跳局域网的分布式异步传输接入策略:性能分析研究
在本文中,我们介绍了一种适用于使用单独控制波长的波分复用局域网(LANs)的光无源网络架构。将数据波长组织成若干组,并对其访问权限进行分布式确定,目的是完全消除数据包在波长上和目的地上的冲突。所提出的访问算法属于异步传输方案。因此,它非常简单,因为它不需要站之间的任何同步,特别是在高数据速率(100 Gbps及以上)下提供高效率。性能通过详尽的分析来评估,而封闭的数学公式提供了性能度量。对比研究表明,所提出的波长组织成集策略和接入方案显著提高了性能。特别是,随着数据集数量的增加,吞吐量的提高被证明是更高的,即使将波长组织为两个集,对于不同数量的数据波长、数据波长集和数据包大小,吞吐量的提高也超过100%。最后,提出的研究可以应用于光无源单跳局域网,如机架内数据中心网络或本地机构或企业网络。
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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来源期刊
Journal of Communications Software and Systems
Journal of Communications Software and Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
14.30%
发文量
28
审稿时长
8 weeks
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