Bandwidth Preemption for High-Priority Data Transfer on Dedicated Channels

Liudong Zuo, C. Wu, N. Rao, Aiqin Hou, Chia-Han Chang
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引用次数: 6

Abstract

Bandwidth reservation has been increasingly used to provide QoS for various network applications. To accommodate a high-priority bandwidth reservation request (BRR), the bandwidth scheduler sometimes needs to preempt existing bandwidth reservations that have been made for BRRs with a lower priority, which is traditionally known as connection preemption. When such preemption is unavoidable, one primary goal of bandwidth scheduling is to minimize the disruption to existing reservations. In this paper, we study the problem of bandwidth reservation preemption for two types of BRRs, bandwidth- and data transfer- oriented, respectively, on one given link of the scheduling network with two different objectives: (i) minimize the number and then the total bandwidth of existing bandwidth reservations to be preempted, and (ii) minimize the total bandwidth and then the number of existing bandwidth reservations to be preempted. We prove these four problems to be NP-complete and propose a heuristic algorithm for each. We also design baseline heuristic algorithms for performance comparison. Extensive simulation results show that the proposed heuristic algorithms outperform those in comparison.
专用通道上高优先级数据传输的带宽抢占
带宽预留越来越多地用于为各种网络应用提供QoS。为了适应高优先级带宽预留请求(BRR),带宽调度器有时需要抢占为较低优先级BRR所做的现有带宽预留,这在传统上称为连接抢占。当这种抢占不可避免时,带宽调度的一个主要目标是尽量减少对现有预留的干扰。在调度网络的一个给定链路上,我们研究了两种类型的brr的带宽预留抢占问题,分别是面向带宽和面向数据传输的brr,它们具有两个不同的目标:(i)最小化现有带宽预留被抢占的数量和总带宽,以及(ii)最小化现有带宽预留被抢占的数量和总带宽。我们证明了这四个问题是np完全的,并为每个问题提出了一个启发式算法。我们还设计了基线启发式算法进行性能比较。大量的仿真结果表明,所提出的启发式算法优于同类算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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