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Traffic Grooming in WDM Optical Packet Rings

机译:WDM光学包环中的交通梳理

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The present paper considers a WDM optical packet ring in which multiple wavelengths are operated in a synchronous manner. This architecture attempts to blend packet switching techniques with optical transparency in order to offer a flexible MAN architecture able to accommodate large amounts of traffic demands. This architecture also performs traffic "grooming" (aggregation between different flows) but does not necessitate Optical-Electrical-Optical conversion in transit nodes. In each time slot, a station can send a single packet, selecting the wavelength on a per-slot basis. Once inserted on the ring, the packet is transmitted transparently to its destination. We consider 2 cases regarding receivers: in the non-WDM case, a station can only receive packets on a single wavelength whereas in the second case, a station can receive packets on all the wavelengths used in the network. In both cases, wavelengths can be shared between the stations. We address both network dimensioning and network capacity issues. The use of optical packet switching is first shown to greatly simplify the network configuration compared to any circuit-switched solution. We also show that with WDM receivers, a simple strategy of load balancing on all the wavelengths used in the network allows to increase the capacity of the network, with the same number of wavelengths, or even allows to dimension the ring with a smaller number of wavelengths. This shows that, in terms of traffic grooming, the system under study behaves similarly to non-transparent optical packet ring architectures that rely on Optical-Electrical-Optical conversion in transit nodes. On the other hand, it is expected to outperform those architectures in terms of node complexity and power consumption.
机译:本文考虑了一种WDM光学分组环,其中多个波长以同步方式操作。该架构试图将数据包交换技术与光学透明度混合,以便提供灵活的人体系结构,能够适应大量的流量需求。该架构还执行流量“修饰”(不同流之间的聚合),但不需要在传输节点中的光学电气光学转换。在每个时隙中,站可以发送单个数据包,以每槽为基础选择波长。一旦插入环,数据包将透明地传输到其目的地。我们考虑有关接收器的2个案例:在非WDM情况下,在第二种情况下,站只能接收单个波长的分组,而在第二种情况下,可以在网络中使用的所有波长接收数据包。在这两种情况下,可以在站之间共享波长。我们解决了网络维度和网络容量问题。首先显示使用光学分组切换,与任何电路交换解决方案相比,大大简化了网络配置。我们还表明,通过WDM接收器,网络中使用的所有波长上的负载平衡的简单策略允许增加网络的容量,具有相同数量的波长,甚至允许以较少数量的尺寸尺寸波长。这表明,在交通展开方面,研究的系统类似地与依赖于传输节点中的光学电光转换的非透明光学分组环形架构类似。另一方面,预计在节点复杂性和功耗方面才能表达这些架构。

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