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Efficient Packet Scheduling Using Channel Adaptive Fair Queueing in Distributed Mobile Computing Systems

机译:分布式移动计算系统中使用信道自适应公平排队的高效分组调度

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摘要

In a distributed mobile computing system, an efficient packet scheduling policy is a crucial component to achieve a high utilization of the precious bandwidth resources while satisfying users' QoS (quality of service) demands. An important class of scheduling techniques, namely, the wireless fair queueing algorithms, have been extensively studied recently. However, a major drawback in existing approaches is that the channel model is overly simplified - a two-state channel (good or bad) is assumed. While it is relatively easy to analyze the system using such a simple model, the algorithms so designed are of a limited applicability in a practical environment, in which the level of burst errors is time-varying and can be exploited by using channel adaptive coding and modulation techniques. In this paper, we first argue that the existing algorithms cannot cater for a more realistic channel model and the traditional notion of fairness is not suitable. We then propose a new notion of fairness, which bounds the actual throughput normalized by channel capacity of any two data connections. Using the new fairness definition, we propose a new fair queueing algorithm called CAFQ (Channel Adaptive Fair Queueing), which, as indicated in our numerical studies, outperforms other algorithms in terms of overall system throughput and fairness among error prone connections.
机译:在分布式移动计算系统中,有效的分组调度策略是在满足用户的QoS(服务质量)要求的同时,实现宝贵带宽资源的高利用率的关键组件。最近已经广泛研究了一类重要的调度技术,即无线公平排队算法。但是,现有方法的主要缺点是通道模型过于简化-假定为两个状态的通道(好或坏)。尽管使用这样一个简单的模型来分析系统相对容易,但如此设计的算法在实际环境中的适用性有限,在该环境中,突发错误的级别随时间变化,可以通过使用信道自适应编码和调制技术。在本文中,我们首先认为,现有算法无法满足更现实的渠道模型,传统的公平概念不适合。然后,我们提出一种新的公平概念,该概念将实际吞吐量限制为通过任何两个数据连接的通道容量归一化。使用新的公平性定义,我们提出了一种新的公平排队算法,称为CAFQ(信道自适应公平排队),如我们的数值研究所示,就整体系统吞吐量和易于出错的连接之间的公平性而言,它优于其他算法。

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