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The service curve service discipline for the rate-controlled EDF service discipline in variable-sized packet networks

机译:可变大小分组网络中速率控制的EDF服务规则的服务曲线服务规则

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摘要

Guaranteed service will provide high quality services to real-time applications, e.g., audio or video, over packet networks such as the Internet. To support guaranteed service, a service discipline must guarantee a delay bound to each session. In addition, a preferred service discipline should achieve high network utilization and good scalability. The service disciplines studied so far have problems in achieving these two objectives at the same time. Generalized processor sharing (GPS) service disciplines can have low network utilization. Rate-controlled (RC) service disciplines have difficulty in scalability because of regulators. For service curve (SC) service disciplines, both the network utilization and the scalability depend on the adopted SC. To date, there have been no studies on an SC which can make an SC discipline achieve these two objectives. We propose a new service discipline based on SC service disciplines. The proposed discipline achieves these two goals in a variable-sized packet environment. We show that the discipline can achieve the network utilization achievable by the RC service disciplines. We further show that our SC requires O(1) complexity for deadline calculation. Different from the RC service disciplines, the SC service discipline with our SC does not need regulators at all. Thus, it has better scalability than the RC service disciplines and is work-conserving. We also show that the proposed SC makes SC service disciplines have strictly higher network utilization than the GPS service disciplines including the multi-rate service discipline.
机译:保证的服务将通过诸如因特网之类的分组网络向例如音频或视频的实时应用提供高质量的服务。为了支持有保证的服务,服务准则必须保证每个会话的延迟。此外,首选的服务规范应实现较高的网络利用率和良好的可伸缩性。迄今为止研究的服务学科在同时实现这两个目标方面存在问题。通用处理器共享(GPS)服务准则可能会降低网络利用率。速率控制(RC)服务学科由于监管机构而难以扩展。对于服务曲线(SC)服务学科,网络利用率和可伸缩性均取决于所采用的SC。迄今为止,还没有关于SC的研究可以使SC学科实现这两个目标。我们建议基于SC服务学科的新服务学科。拟议的学科在可变大小的数据包环境中实现了这两个目标。我们显示该学科可以实现RC服务学科可以实现的网络利用率。我们进一步表明,我们的SC需要O(1)复杂度来计算截止日期。与RC服务学科不同,SC的SC服务学科完全不需要监管机构。因此,它具有比RC服务规范更好的可伸缩性,并且可以节省工作量。我们还表明,提出的SC使SC服务学科具有比GPS服务学科(包括多速率服务学科)更高的网络利用率。

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