Alternate Multihop Routing in Limited Reconfigurable Optical Networks

O. Turkcu, S. Subramaniam
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引用次数: 1

Abstract

In this paper, we investigate the performance of limited reconfigurable optical networks when multihopping is used. Multihopping is achieved by dropping a wavelength at an intermediate node and transmitting on another wavelength at that node (O-E-O). A route can consist of several such hops each obeying the wavelength continuity constraint individually. Considering that a receiver and a transmitter are used for add/drop at a node, multihopping is restricted by the number of transponders and their tunabilities. We develop a dynamic routing strategy based on the availability and tunability of transponders as well as the wavelength availability. We adopt a Share-Per-Link model for the usage of transponders within a reconfigurable node, and each node is assumed to be equipped with a ROADM which can add/drop any wavelength to any of the ports. We show that the proposed routing strategy improves the blocking performance significantly compared to fixed routing with or without multihopping or alternate routing methods without multihopping.
有限可重构光网络中的备用多跳路由
在本文中,我们研究了当使用多跳时有限可重构光网络的性能。多跳是通过在中间节点丢弃一个波长并在该节点上传输另一个波长(O-E-O)来实现的。一条路由可以由几个这样的跳组成,每个跳分别服从波长连续性约束。考虑到在一个节点上使用一个接收端和一个发送端进行添加/删除,多跳受到应答器数量及其可调性的限制。基于应答器的可用性和可调性以及波长的可用性,我们开发了一种动态路由策略。对于可重构节点内的转发器使用,我们采用了Share-Per-Link模型,并且假设每个节点都配备了一个ROADM,该ROADM可以向任何端口添加/删除任何波长。研究表明,与带或不带多跳的固定路由或不带多跳的备选路由方法相比,所提出的路由策略显著提高了阻塞性能。
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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