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Absolute quality-of-service differentiation in optical burst switching networks.

机译:光突发交换网络中的绝对服务质量差异。

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摘要

Absolute Quality of Service (QoS) differentiation is an important issue in Optical Burst Switching (OBS) networks. This thesis aims at providing loss rate guarantees for the priority-guaranteed (PG) classes on an end-to-end (E2E) basis while keeping the loss rate of the best effort (BE) class traffic as low as possible.;We first present a per-hop absolute QoS differentiation scheme called Reserve-and-Preempt Scheme (RPS). The Analytical model of RPS is provided as well. In order to support networks with multiple PG classes, RPS is extended into a variety of new schemes. Among the proposed schemes, Extended Reserve-and-Preempt Scheme (ERPS) is easier to implement and provides the best performance.;On an E2E basis, we apply ERPS over an entire OBS network. To achieve a balance between scalability and unnecessary bandwidth consumption on the intermediate links, we propose optimized priority grouping with single-class constraint (OPT-SC) and optimized priority grouping without single-class constraint (OPT-NC). Furthermore, to cope with the traffic-fluctuation and the load-unbalance problems in OBS networks, we present a novel self-adaptive algorithm, which integrates two priority-level adjustment mechanisms, priority-level upgrading (PLU) and priority-level degrading (PLD).;Extensive simulations are conducted to demonstrate the effectiveness of the proposed schemes. Simulation results show that our proposed RPS scheme outperforms the existing schemes. The correctness of the analytical model of RPS is demonstrated by simulation. We also observe that ERPS performs the best among the schemes extended from RPS. Simulation results also demonstrate that the proposed OPG-SC and OPG-NC techniques can reduce the bandwidth consumed by the PG classes and improve the performance of the BE class. Finally, we observe that the proposed self-adaptive algorithm can improve the performance of the PG classes with minimum expense on the BE class. At the same time, it is shown to be self-adaptive to traffic fluctuation.
机译:绝对服务质量(QoS)差异是光突发交换(OBS)网络中的重要问题。本文旨在在端到端(E2E)的基础上为优先保证(PG)类提供损失率保证,同时将尽力而为(BE)类流量的损失率保持在尽可能低的水平。提出了一种称为保留和抢占方案(RPS)的每跳绝对QoS区分方案。还提供了RPS的分析模型。为了支持具有多个PG类的网络,RPS扩展为各种新方案。在提议的方案中,扩展预留和抢占方案(ERPS)易于实施,并提供最佳性能。在端到端的基础上,我们在整个OBS网络上应用ERPS。为了在中间链路上实现可伸缩性和不必要的带宽消耗之间的平衡,我们提出了具有单类约束的优化优先级分组(OPT-SC)和无单类约束的优化优先级分组(OPT-NC)。此外,为了解决OBS网络中的流量波动和负载不平衡问题,我们提出了一种新颖的自适应算法,该算法集成了两种优先级调整机制:优先级升级(PLU)和优先级降级( PLD).;进行了广泛的仿真,以证明所提出方案的有效性。仿真结果表明,本文提出的RPS方案优于现有方案。通过仿真证明了RPS分析模型的正确性。我们还观察到,ERPS在RPS扩展的方案中表现最佳。仿真结果还表明,提出的OPG-SC和OPG-NC技术可以减少PG类消耗的带宽并提高BE类的性能。最后,我们观察到,所提出的自适应算法可以以最小的BE类开销来提高PG类的性能。同时,它显示出对交通波动的自适应。

著录项

  • 作者

    Lui, Hongbo.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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