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Using routing information to improve MAC performance in multi-hop wireless networks.

机译:使用路由信息来提高多跳无线网络中的MAC性能。

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摘要

As wireless communication technology becomes increasingly available, multi-hop wireless networks such as wireless sensor networks and wireless mesh networks are receiving substantial attention from both academic and industrial efforts. However, traditional contention-based wireless MAC protocols such as IEEE 802.11 DCF are designed for single-hop wireless networks and do not perform well in multi-hop scenarios due to inefficiency in their medium reservation mechanisms.;In this thesis, a new general mechanism, utilizing a new Pioneer (PION) scheduling frame, is introduced to improve the efficiency in wireless medium reservation for multi-hop wireless networks. With the help of limited routing information at the MAC layer, this new mechanism enables multiple stations along a delivery path to cooperate. In particular, the PION control frame can travel across multiple hops and make medium reservations along the route for the upcoming data frame transmissions. This cooperation across multiple hops at the MAC layer can therefore greatly improve the medium reservation efficiency.;This thesis introduces the PION mechanism and illustrates its use through application in two different types of MAC protocols. First, in the energy-constrained sensor network environment, I develop a new a duty-cycle based MAC protocol, called RMAC. Comparing against S-MAC, a classic duty-cycle MAC protocol, RMAC shows significant performance improvement in both packet delivery latency and network throughput, with even better energy efficiency. Second, the new PION mechanism is then applied to the general case of multi-hop wireless networks in the design of a MAC protocol called EMAC. Simulation results under various scenarios and traffic loads have shown the potential of EMAC over IEEE 802.11, including throughput improvement and decrease in packet relaying time.
机译:随着无线通信技术变得越来越可用,诸如无线传感器网络和无线网状网络的多跳无线网络正受到学术和工业努力的极大关注。但是,传统的基于竞争的无线MAC协议(如IEEE 802.11 DCF)是为单跳无线网络设计的,由于其媒体预留机制效率低下,因此在多跳场景中无法很好地发挥作用。引入了利用新的Pioneer(PION)调度帧的功能,以提高用于多跳无线网络的无线媒体预留的效率。借助MAC层上有限的路由信息​​,此新机制使沿传送路径的多个站点可以协作。特别是,PION控制帧可以跨多跳传播,并为即将到来的数据帧传输沿路由进行中等保留。因此,在MAC层的多跳之间的这种协作可以大大提高介质预留效率。本文介绍了PION机制,并通过在两种不同类型的MAC协议中的应用说明了PION机制的用法。首先,在能量受限的传感器网络环境中,我开发了一种新的基于占空比的MAC协议,称为RMAC。与经典的占空比MAC协议S-MAC相比,RMAC在数据包传递延迟和网络吞吐量方面均显示出显着的性能改善,甚至具有更高的能源效率。其次,在称为EMAC的MAC协议的设计中,新的PION机制随后应用于多跳无线网络的一般情况。在各种情况和流量负载下的仿真结果显示了EMAC在IEEE 802.11上的潜力,包括吞吐量的提高和分组中继时间的减少。

著录项

  • 作者

    Du, Shu.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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