无线网络中的高吞吐量MAC层多播

Ai Chen, Dongwook Lee, Gayathri Chandrasekaran, P. Sinha
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引用次数: 61

摘要

为了满足基于WiFi和网状网络的多播应用的需求,需要MAC层提供高效、可扩展和健壮的多播支持。然而,IEEE 802.11协议没有特定的多播机制。它使用广播在基本传输速率下实现多播。我们确定了这种方法性能限制的两个基本原因:(a)信道状态无关性:无论当前到接收器的信道质量如何,传输总是使用基本传输速率;(b)需求忽略:即使组播树中的子节点由于侦听而接收到这些数据包,也会由节点传输。我们提出了一种MAC层多播的解决方案,称为HIMAC,它使用以下两种机制:一元信道反馈(UCF)和一元负反馈(UNF)来分别解决802.11的缺点。我们的研究得到了试验台测量和模拟的支持。我们观察到,使用MAODV的多播会话的端到端吞吐量最多可以增加74%,同时将端到端延迟减少多达56倍
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HIMAC: High Throughput MAC Layer Multicasting in Wireless Networks
Efficient, scalable and robust multicasting support from the MAC layer is needed for meeting the demands of multicast based applications over WiFi and mesh networks. However, the IEEE 802.11 protocol has no specific mechanism for multicasting. It implements multicasting using broadcasting at the base transmission rate. We identify two fundamental reasons for performance limitations of this approach: (a) Channel-state indifference: irrespective of the current quality of the channel to the receivers, the transmission always uses the base transmission rate; (b) Demand ignorance: packets are transmitted by a node even if children in the multicast tree have received those packets by virtue of overhearing. We propose a solution for MAC layer multicasting called HIMAC that uses the following two mechanisms: unary channel feedback (UCF) and unary negative feedback (UNF) to respectively address the shortcomings of 802.11. Our study is supported by measurements in a testbed, and simulations. We observe that the end-to-end throughput of multicast sessions using MAODV can be increased by up to 74% while reducing the end-to-end latency by up to a factor of 56
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