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Analytical blocking probability model for hybrid immediate and advance reservations in optical WDM networks

机译:光WDm网络中混合即时预留和超前预留的分析阻塞概率模型

摘要

Immediate reservation (IR) and advance reservation (AR) are the two main reservation mechanisms currently implemented on large-scale scientific optical networks. They can be used to satisfy both provisioning delay and low blocking for delay-tolerant applications. Therefore, it seems reasonable that future optical network provisioning systems will provide both mechanisms in hybrid IR/AR scenarios. Nonetheless, such scenarios can increase the blocking of IR if no quality-of-service (QoS) policies are implemented. A solution could be to quantify such blocking performance based on the current network load and implement mechanisms that would act accordingly. However, current blocking analytical models are not able to deal with both IR and AR. In this paper, we propose an analytical model toudcompute the network-wide blocking performance of different IR/AR classes within the scope of a multiservice framework for optical wavelength-division multiplexing (WDM) networks. Specifically, we calculate the blocking on two common optical network scenarios using the fixed-point approximation analysis: on wavelength conversion capable and wavelength-continuity constrained networks. Performance results show that our model provides good accuracy compared to simulation results, even in a scenario with multiple reservation classes defined by different book-ahead times.
机译:立即预留(IR)和提前预留(AR)是当前在大规模科学光网络上实现的两个主要预留机制。它们可用于满足延迟允许的应用程序的供应延迟和低阻塞。因此,未来的光网络供应系统将在混合IR / AR场景中提供两种机制似乎是合理的。但是,如果未实施服务质量(QoS)策略,则此类方案可能会增加对IR的阻止。一种解决方案是根据当前的网络负载来量化这种阻塞性能,并实施相应地起作用的机制。但是,当前的阻塞分析模型无法同时处理IR和AR。在本文中,我们提出了一种分析模型,可以在光波分复用(WDM)网络的多服务框架范围内 udud计算不同IR / AR类的网络范围的阻塞性能。具体来说,我们使用定点近似分析来计算两种常见的光网络情况下的阻塞:具有波长转换能力和受波长连续性约束的网络。性能结果表明,即使在具有由不同提前预订时间定义的多个预订类别的情况下,与仿真结果相比,我们的模型也具有较高的准确性。

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