论文标题
延迟受限的拓扑 - 透明分布式安排MANETS
Delay-Constrained Topology-Transparent Distributed Scheduling for MANETs
论文作者
论文摘要
透明拓扑在许多移动临时网络(MANETS)中很常见,例如车辆临时网络(VANETS),无人驾驶飞机(UAV)临时网络和无线传感器网络,由于其分散性和移动性性质。在分布式调度方案设计设计上,有许多现有的作品,用于拓扑 - 透明的Manets。他们中的大多数专注于延迟不受限制的设置。但是,随着实时应用程序对无线通信的扩散,对于支持延迟约束的MANET的流量变得越来越重要。在此类应用中,每个数据包都有一个给定的硬期限:如果在其截止日期之前未交付,则其有效性将到期,并且将从系统中删除。此功能与传统的延迟不可约合的功能根本不同。在本文中,我们第一次研究分布式的调度方案,以提供拓扑透明的MANET,以支持延迟约束的流量。我们分析和比较概率的ALOHA方案和确定性序列方案,包括常规时间划分多重访问(TDMA),Galois领域(GF)序列方案在\ cite {Chlamtac1994making}中提出的提议,以及我们对所有类型的分析组合的组合序列方案。总结不同单个方案最佳的条件。
Transparent topology is common in many mobile ad hoc networks (MANETs) such as vehicle ad hoc networks (VANETs), unmanned aerial vehicle (UAV) ad hoc networks, and wireless sensor networks due to their decentralization and mobility nature. There are many existing works on distributed scheduling scheme design for topology-transparent MANETs. Most of them focus on delay-unconstrained settings. However, with the proliferation of real-time applications over wireless communications, it becomes more and more important to support delay-constrained traffic in MANETs. In such applications, each packet has a given hard deadline: if it is not delivered before its deadline, its validity will expire and it will be removed from the system. This feature is fundamentally different from the traditional delay-unconstrained one. In this paper, we for the first time investigate distributed scheduling schemes for a topology-transparent MANET to support delay-constrained traffic. We analyze and compare probabilistic ALOHA scheme and deterministic sequence schemes, including the conventional time division multiple access (TDMA), the Galois field (GF) sequence scheme proposed in \cite{chlamtac1994making}, and the combination sequence scheme that we propose for a special type of sparse network topology.We use both theoretical analysis and empirical simulations to compare all these schemes and summarize the conditions under which different individual schemes perform best.