On the performance of largest-deficit-first for scheduling real-time traffic in wireless networks

Xiaohan Kang, Weina Wang, J. J. Jaramillo, Lei Ying
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引用次数: 49

Abstract

This paper considers the problem of scheduling real-time traffic in wireless networks. We consider an ad hoc wireless network with general interference and general one-hop traffic. Each packet is associated with a deadline and will be dropped if it is not transmitted before the deadline expires. The number of packet arrivals in each time slot and the length of a deadline are both stochastic and follow certain distributions. We only allow a fraction of packets to be dropped. At each link, we assume the link keeps track of the difference between the minimum number of packets that need to be delivered and the number of packets that are actually delivered, which we call deficit. The largest-deficit-first (LDF) policy schedules links in descending order according to their deficit values, which is a variation of the largest-queue-first (LQF) policy for non-real-time traffic. We prove that the efficiency ratio of LDF can be lower bounded by a quantity that we call the real-time local-pooling factor (R-LPF). We further prove that given a network with interference degree β, the R-LPF is at least 1/(β+1), which in the case of the one-hop interference model translates into an R-LPF of at least 1/3.
基于最大赤字优先的无线网络实时流量调度性能研究
本文研究了无线网络中的实时流量调度问题。我们考虑一个具有一般干扰和一般单跳流量的自组织无线网络。每个数据包都与一个截止日期相关联,如果在截止日期之前没有传输,则将被丢弃。每个时隙到达的数据包数量和截止时间长度都是随机的,并遵循一定的分布。我们只允许丢弃一小部分数据包。在每个链路上,我们假设该链路跟踪需要传递的最小数据包数量与实际传递的数据包数量之间的差异,我们称之为赤字。LDF (maximum -deficit-first)策略是针对非实时流量的LQF (large -queue-first)策略的一种变体,根据链路的赤字值降序调度链路。我们证明了LDF的效率比可以被一个我们称为实时本地池化因子(R-LPF)的量下界。我们进一步证明了给定干扰度为β的网络,其R-LPF至少为1/(β+1),在单跳干扰模型下,其R-LPF至少为1/3。
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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