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Service differentiated provisioning in dynamic WDM networks based on set-up delay tolerance

机译:基于设置延迟容限的动态WDM网络中的服务差异化配置

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Optical networks are expected to provide a unified platform for a diverse set of emerging applications (three-dimensional TV, digital cinema, e-health, grid computing, etc). The service differentiation will be an essential feature of these networks. Considering the fact that users have different levels of patience for different network applications, referred to as set-up delay tolerance, it will be one of the key parameters for service differentiation. Service differentiation based on set-up delay tolerance will not only enable network users to select an appropriate service class (SC) in compliance with their requirements, but will also provide an opportunity to optimize the network resource provisioning by exploiting this information, resulting in an improvement in the overall performance. Improvement in network performance can be further enhanced by exploiting the connection holding-time awareness. However, when multiple classes of service with different set-up delay tolerances are competing for network resources, the connection requests belonging to SCs with higher set-up delay tolerance have better chances to grab the resources and leave less room for the others, resulting in degradation in the blocking performance of less patient customers. This study proposes different scheduling strategies for promoting the requests belonging to smaller set-up delay tolerance SCs, such as giving priority, reserving some fraction of available resources, and augmenting the research space by providing some extra paths. Extensive simulation results show that 1) priority in the rescheduling queue is not always sufficient for eradicating the degradation effect of high delay tolerant SCs on the provisioning rate of the most stringent SC, and 2) by utilizing the proposed strategies, resource efficiency and overall network blocking performance improve significantly in all SCs.
机译:光网络有望为各种新兴应用(三维电视,数字电影,电子医疗,网格计算等)提供统一的平台。服务差异化将是这些网络的基本特征。考虑到用户对不同的网络应用程序有不同的耐心程度,称为建立延迟容忍度,这将成为区分服务的关键参数之一。基于建立时延容忍度的服务区分不仅使网络用户能够根据他们的要求选择适当的服务类别(SC),而且还将提供利用此信息来优化网络资源供应的机会,从而实现整体表现有所改善。通过利用连接保持时间意识,可以进一步增强网络性能。但是,当具有不同设置延迟容限的多个服务类别竞争网络资源时,属于具有较高设置延迟容忍度的SC的连接请求将有更好的机会抢占资源并为其他资源留出更少的空间,从而导致减少耐心顾客的阻塞性能。这项研究提出了不同的调度策略来促进属于较小设置延迟容限SC的请求,例如给予优先级,保留部分可用资源以及通过提供一些额外路径来扩大研究空间。大量的仿真结果表明:1)重新调度队列中的优先级并不总是足以消除对高延迟SC的降级对最严格的SC的配置速度的影响,以及2)通过利用所提出的策略,资源效率和整个网络所有SC的阻塞性能均得到显着改善。

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