Dynamic reconfiguration and routing algorithms for IP-over-WDM networks with stochastic traffic

A. Brzezinski, E. Modiano
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引用次数: 57

Abstract

We develop algorithms for joint IP layer routing and WDM logical topology reconfiguration in IP-over-WDM networks experiencing stochastic traffic. At the WDM layer, we associate a non-negligible tuning latency with WDM reconfiguration, during which time tuned transceivers cannot service backlogged data. The IP layer is modeled as a queueing system. We demonstrate that our algorithms achieve asymptotic throughput optimality by using frame-based maximum weight scheduling decisions. We study both deterministic and random frame durations. In addition to dynamically triggering WDM reconfiguration, our algorithms specify precisely how to route packets over the IP layer during the phases in which the WDM layer remains fixed. Our algorithms remain valid under a variety of optical layer constraints. We provide an analysis of the specific case of WDM networks with multiple ports per node. In order to gauge the delay properties of our algorithms, we conduct a simulation study and demonstrate an important tradeoff between WDM reconfiguration and IP layer routing. We find that multi-hop routing is extremely beneficial at low throughput levels, while single-hop routing achieves improved delay at high throughput levels. For a simple access network, we demonstrate through simulation the benefit of employing multi-hop IP layer routes.
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随机流量下IP-over-WDM网络的动态重构与路由算法
我们开发了IP-over-WDM网络中IP层路由和WDM逻辑拓扑重构的算法。在WDM层,我们将不可忽略的调优延迟与WDM重新配置联系起来,在此期间,调优的收发器无法处理积压的数据。IP层被建模为一个排队系统。我们证明了我们的算法通过使用基于帧的最大权重调度决策来实现渐近吞吐量最优。我们研究确定性和随机帧持续时间。除了动态触发WDM重新配置之外,我们的算法还精确地指定了在WDM层保持固定的阶段如何在IP层上路由数据包。我们的算法在各种光层约束下仍然有效。我们对每个节点有多个端口的WDM网络的具体情况进行了分析。为了测量我们算法的延迟特性,我们进行了仿真研究,并演示了WDM重构和IP层路由之间的重要权衡。我们发现多跳路由在低吞吐量水平下是非常有益的,而单跳路由在高吞吐量水平下实现了改进的延迟。对于一个简单的接入网,我们通过仿真证明了采用多跳IP层路由的好处。
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