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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Wireless Mesh Network Capacity Achievable Over the CSMA/CA MAC
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Wireless Mesh Network Capacity Achievable Over the CSMA/CA MAC

机译:通过CSMA / CA MAC可实现无线网状网络容量

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摘要

This paper presents a theoretical analysis of the maximum throughput of a wireless mesh backhaul network that is achievable over a practical carrier sense multiple access with collision avoidance (CSMA/CA) medium access control (MAC) protocol. We resort to the multicommodity flow (MCF) formulation augmented with the conflict-graph constraints, whereas we use a novel approach to take into account the collision overhead in the distributed CSMA/CA MAC. Such overhead due to random access has been ignored by existing MCF-based capacity studies, which assume impractical centralized scheduling and result in aggressive capacity planning, which is unachievable over the CSMA/CA MAC. This paper makes the following three main contributions: 1) we develop a generic method of integrating the CSMA/CA MAC analysis with the MCF formulation for optimal network capacity analysis, which readily generates an upper bound of the network throughput; 2) we define a new concept of CSMA/CA clique and theoretically study its relationship to a CSMA/CA area in terms of throughput; and 3) using the CSMA/CA clique as a tool, we derive a lower bound of the network throughput achievable over the CSMA/CA MAC by clique-based MCF formulation. NS-2 simulation results are presented to demonstrate the tightness of the upper and lower bounds that are newly developed, compared to those based on the MCF formulation assuming a slotted system and centralized scheduling.
机译:本文介绍了无线网状回传网络的最大吞吐量的理论分析,该网络可通过实际的带有冲突避免的载波侦听多路访问(CSMA / CA)媒体访问控制(MAC)协议实现。我们诉诸于带有冲突图约束的多商品流(MCF)公式,而我们使用一种新颖的方法来考虑分布式CSMA / CA MAC中的冲突开销。现有的基于MCF的容量研究已忽略了由于随机访问而导致的此类开销,这些研究假设不切实际的集中式调度并导致积极的容量规划,而这在CSMA / CA MAC上是无法实现的。本文做出以下三个主要贡献:1)我们开发了一种将CSMA / CA MAC分析与MCF公式相集成的通用方法,以进行最佳网络容量分析,该方法很容易产生网络吞吐量的上限。 2)我们定义了CSMA / CA集团的新概念,并在吞吐量方面从理论上研究了其与CSMA / CA区域的关系;和3)使用CSMA / CA集团作为工具,通过基于集团的MCF公式得出CSMA / CA MAC上可达到的网络吞吐量的下限。提出了NS-2仿真结果,以证明新开发的上限和下限的紧密度,与基于MCF公式(假定采用分时段系统和集中式调度)的紧密度相比。

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