用于鱼骨状秘鲁WDM核心网的2-STCg光组播流量梳理节点

N. C. L. Valdivia, G. M. Fernández
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引用次数: 0

摘要

在一些发展中国家,如秘鲁,光传输网络没有广泛部署,主要是因为经济因素和地理困难。它的拓扑结构具有鱼骨状结构,可能不需要强大的全光组播节点来满足组播需求。此外,业务需求可能不会占用所有的波长容量,这使得业务疏导成为节省带宽的必要功能。在目前的工作中,我们提出了一种能够在流量疏导级别执行多播路由任务的光节点。该节点的架构基于两个先前的工作:2- split - tapand - continue (2-STC)节点(具有简单结构的多播能力节点,受二进制分割的限制,但在使用功率水平和使用的元素数量方面效率很高),以及Stop-and-Go (S/G) Light Tree节点(使用基于FSK调制的标记技术的多播处理能力节点,允许在光学级别路由多播请求)。从这个意义上说,所提出的节点利用了这种特殊的鱼骨状网络中的物理分布,改善了光功率的使用、带宽的浪费和延迟。已经进行了几次模拟,结果证实了这些评估。
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2-STCg optical multicast traffic grooming node for the fishbone-like Peruvian WDM core network
In some developing countries, like Peru, optical transport networks are not widely deployed, mainly because of economical factors and geographical difficulties. Its topology has a fishbone-like structure, and it may not need powerful all-optical multicast nodes in order to attend multicast demands. Also, traffic demands may not occupy all the wavelength capacities, which make traffic grooming a necessary capability for saving bandwidth. In the present work we propose an optical node capable of performing multicast routing tasks at traffic grooming level. The node's architecture has been based on two previous works: the 2-Split-Tap-and-Continue (2-STC) node (a multicast capable node with a simple structure, constrained to binary-splitting, but efficient regarding the use of power levels and the number of elements used), and the Stop-and-Go (S/G) Light Tree node (a multicast grooming capable node that uses a labeling technique based on FSK modulation, allowing multicast requests to be routed at the optical level). In this sense, the proposed node improves the use of the optical power, waste of bandwidth and delay, taking advantage of the physical distribution presented in this particular fishbone-like network. Several simulations have been done and results show these assessments.
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