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Infrastructure-based MAC in wireless mobile ad-hoc networks.

机译:无线移动自组织网络中基于基础结构的MAC。

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摘要

The IEEE 802.11 standard is the most popular Media Access Control (MAC) protocol for infrastructure-based wireless local area networks. However, in an ad-hoc environment, the Point Coordination Function (PCF), defined in the standard, cannot be readily used. This is due to the fact that there is no central authority to act as a Point Coordinator (PC). Peer-to-peer ad-hoc mode in the IEEE 802.11 standard only implements the Distributed Coordination Function (DCF). In this thesis, an efficient and on-the-fly infrastructure is created using our proposed Mobile Point Coordinator (MPC) protocol. Based on this protocol, we also develop an efficient MAC protocol, namely MPC-MAC. Our MAC protocol extends the IEEE 802.11 standard for use in multi-hop wireless ad-hoc networks implementing both the DCF and PCF modes of operation. The goal, and also the challenge, is to achieve QoS delivery and priority access for real-time traffic in ad-hoc wireless environments while maintaining backward compatibility with the IEEE 802.11 standard.; The performance of MPC-MAC is compared to the IEEE 802.11 DCF-based MAC without MPC. Simulation experiments show that in all cases the use of PCF benefits real-time packets by decreasing the average delay and the discard ratio. However, this may come at the expense of increasing the average delay for non-real-time data. The discard ratio for both real-time and non-real-time packets improves with the use of PCF. Therefore, our MPC-MAC outperforms the standard DCF IEEE 802.11 MAC protocol in multi-hop ad-hoc environments.
机译:IEEE 802.11标准是用于基于基础结构的无线局域网的最流行的媒体访问控制(MAC)协议。但是,在临时环境中,标准中定义的点协调功能(PCF)无法使用。这是由于以下事实:没有中央机构可以充当点协调器(PC)。 IEEE 802.11标准中的对等自组织模式仅实现分布式协调功能(DCF)。在本文中,使用我们提出的“移动点协调器”(MPC)协议创建了高效且即时的基础结构。基于此协议,我们还开发了一种有效的MAC协议,即MPC-MAC。我们的MAC协议扩展了IEEE 802.11标准,可用于同时实现DCF和PCF操作模式的多跳无线ad-hoc网络。目标(也是挑战)是在临时无线环境中实现实时流量的QoS传递和优先级访问,同时保持与IEEE 802.11标准的向后兼容性。将MPC-MAC的性能与不带MPC的基于IEEE 802.11 DCF的MAC进行了比较。仿真实验表明,在所有情况下,PCF的使用都会通过减少平均延迟和丢弃率来使实时数据包受益。但是,这可能以增加非实时数据的平均延迟为代价。使用PCF可以提高实时和非实时数据包的丢弃率。因此,在多跳自组织环境中,我们的MPC-MAC优于标准DCF IEEE 802.11 MAC协议。

著录项

  • 作者

    You, Tiantong.;

  • 作者单位

    Queen's University at Kingston (Canada).;

  • 授予单位 Queen's University at Kingston (Canada).;
  • 学科 Computer Science.
  • 学位 M.Sc.
  • 年度 2002
  • 页码 139 p.
  • 总页数 139
  • 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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