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Improving service differentiation of immediate and advance reservation in resource-partitioned optical WDM networks

机译:在资源划分的光WDM网络中提高即时预留和提前预留的服务差异性

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As a result of the rise of Cloud and Grid computing, network operators are requested to improve their resource provisioning systems. In such scenarios, advance reservation (AR) and immediate reservation (IR) are gaining importance. While the former is capable of delivering low connection blocking for delay-tolerant applications, the latter is used by delay-sensitive ones. Even when both IR and AR requests share the same network substrate, service differentiation is needed. Additionally, under network resources partitioning, not only can the overall network capacity be under-utilized, but service differentiation can also be degraded. In this paper, we assess hybrid IR/AR sharing and partitioning mechanisms in optical wavelength-division multiplexing (WDM) networks, and propose efficient schemes for providing relative quality of service (QoS) differentiation among traffic classes. In order to overcome the poor resource utilization of strict partitioning, we develop and evaluate a preemption-based flexible partitioning framework aiming to provide relative QoS in hybrid IR/AR environments still supporting resource partitioning. Two preemption policies are proposed: switch first then preempt (SFTP) and preempt first then switch (PFTS). Through extensive simulations, we show that the proposed flexible partitioning framework can improve resource utilization, lower the overall blocking, and achieve well-differentiated relative QoS compared to strict partitioning.
机译:由于云计算和网格计算的兴起,要求网络运营商改善其资源供应系统。在这种情况下,提前保留(AR)和立即保留(IR)变得越来越重要。前者能够为延迟允许的应用程序提供低连接阻塞,而后者则由延迟敏感的应用程序使用。即使IR和AR请求共享同一网络基板,也需要区分服务。此外,在网络资源分区下,不仅网络总容量利用率不高,而且服务差异也可能降低。在本文中,我们评估了光波分复用(WDM)网络中的混合IR / AR共享和分区机制,并提出了有效的方案来提供流量类别之间的相对服务质量(QoS)区分。为了克服严格分区资源利用率低的问题,我们开发并评估了基于抢占的灵活分区框架,旨在在仍支持资源分区的混合IR / AR环境中提供相对的QoS。提出了两种抢占策略:先切换再抢占(SFTP),先切换再抢占(PFTS)。通过广泛的仿真,我们表明,与严格的分区相比,所提出的灵活分区框架可以提高资源利用率,降低总体阻塞并实现完全不同的相对QoS。

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