基于效用的三播业务带宽分配

Changbin Liu, Lei Shi, B. Liu
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引用次数: 49

摘要

预计在不久的将来,以前在公用交换电话网(PSTN)、有线电视网络和IP网络中的多类业务将在骨干网进行多路复用,并由融合下一代网络(NGN)承载。如何在话音(VoIP)、视频(IPTV)和数据这三种业务之间安排流量和分配带宽,是推动下一代网络发展的一个实际挑战。与工业上广泛使用的基于严格优先级的调度不同,本文试图从网络效用最大化的目标来讨论这一问题。我们首先研究了大多数现有流量类的特征,并明确地将它们的效用表示为占用带宽的函数。在此基础上,利用KKT条件下的拉格朗日方法,提出了一种新的实现NUM的调度方案。计算了两种网络情况下的数值结果。两者都揭示了这种调度的独特性,与严格优先级调度相比,VoIP流量仍然具有最高优先级,但IPTV流量不应具有严格优先级,因为它与NUM目标相冲突。我们希望我们的研究结果能够阐明向融合网络发展的方向
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utility-Based Bandwidth Allocation for Triple-Play Services
It is expected that, in near future, the multi-class traffic previously in public switched telephone network (PSTN), cable television network and IP network will be multiplexed at backbone and carried by the converged next-generation network (NGN). A pragmatic challenge in facilitating NGN is how to schedule traffic and allocate bandwidth among the triple-play services, namely voice (VoIP), video (IPTV) and data. Different from traditional strict-priority based scheduling intensively used in industry, in this paper, we try to discuss this issue from the objective of network utility maximization (NUM). We first investigate the characteristics of most existing traffic classes and explicitly formulate their utilities to be the function of occupied bandwidth. After that, a novel scheduling scheme to achieve NUM is derived using Lagrange method with KKT conditions. Numerical results under two network scenarios are calculated. Both of them reveal the unique nature of this scheduling, compared with strict-priority scheduling, still highest priority is provided for VoIP traffic, however, no strict priority should be given to IPTV traffic since it will conflict with NUM objective. We hope our results will shed lights on the evolvement towards the converged network
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