未来网络中WDM/OCDMA交换启发式方法的初步研究

G. Ii, K. Dimyati
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引用次数: 3

摘要

本文旨在研究未来交换机的设计问题,并确定最先进技术的瓶颈,以支持未来的流量和服务需求。未来的交换机应该实现高速交换,消除缓冲区的实现,数据包格式透明,并允许多用户访问。因此,有必要开发一种启发式方法来处理多协议标签交换(MPLS),并通过实现光码分多址(OCDMA)数据报来支持所有光标签交换(AOLS)路由协议。因此,为了应对竞争条件,可以将WDM与OCDMA集成,后者提供更多的信道和网络容量。它通过将多个波长耦合到一根光纤中来利用巨大的带宽。这将减少由于争用而导致的数据包丢失的概率。此外,正交码和标签交换提高了网络吞吐量。此外,本文还探讨了WDM/OCDMA实现的可能性,并将初步研究的仿真结果与传统方法进行了比较。相对而言,这项工作的目的是表征构成路由器/交换机的所有组件,包括多路复用器、解路复用器、编码器和解码器。通过考虑上述特性和需求,讨论了几个相关问题和限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary Study of Heuristic Approach for WDM/OCDMA Switch in Future Network
This paper aims to study the design issues of a future switch and to identify the bottlenecks of the state-of-the-art technology to support the future traffic and service demand. The future switch should perform high speed switching, eliminate the implementation of buffers, transparent packet format and allows multiple user access. Thus, the development of a heuristic approach that handles multi protocol label swapping (MPLS) and supports all optical label swapping (AOLS) routing protocols via the implementation of optical code division multiple access (OCDMA) datagram is necessary. Consequently, to prepare for contention conditions, WDM can be integrated with OCDMA that offers more channels and network capacity. It harnesses enormous bandwidth by coupling multiple wavelengths into a single fiber. This should reduce the probability of packet loss due to contention. Furthermore, the orthogonal code and label swapping enhance the network throughput. Also, this paper investigates the possibility of the realization of WDM/OCDMA and the simulation results from the preliminary study are compared with the conventional approaches. Relatively, the work is aimed to characterize all components making up the router/switch that consists of the multiplexer, demultiplexer, encoder and decoder. Several relevant issues and the limitations are discussed by considering the features and requirements aforementioned.
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