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Medium access control and network coding for wireless information flows.

机译:无线信息流的媒体访问控制和网络编码。

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摘要

This dissertation addresses the intertwined problems of medium access control (MAC) and network coding in ad hoc wireless networks. The emerging wireless network applications introduce new challenges that go beyond the classical understanding of wireline networks based on layered architecture and cooperation. Wireless networks involve strong interactions between MAC and network layers that need to be jointly specified in a cross-layer design framework with cooperative and non-cooperative users.; For multi-hop wireless networks, we first rediscover the value of scheduled access at MAC layer through a detailed foray into the questions of throughput and energy consumption. We propose a distributed time-division mechanism to activate dynamic transmitter-receiver assignments and eliminate interference at non-intended receivers for throughput and energy-efficient resource allocation based on stable operation with arbitrary single-receiver MAC protocols.; In addition to full cooperation, we consider competitive operation of selfish users with individual performance objectives of throughput, energy and delay. We follow a game-theoretic approach to evaluate the non-cooperative equilibrium strategies at MAC layer and discuss the coupling with physical layer through power and rate control. As a cross-layer extension to multi-hop operation, we analyze the non-cooperative operation of joint MAC and routing, and introduce cooperation stimulation mechanisms for packet forwarding. We also study the impact of malicious transmitters through a game formulation of denial of service attacks in random access and power-controlled MAC.; As a new networking paradigm, network coding extends routing by allowing intermediate transmitters to code over the received packets. We introduce the adaptation of network coding to wireless environment in conjunction with MAC. We address new research problems that arise when network coding is cast in a cross-layer optimization framework with stable operation. We specify the maximum throughput and stability regions, and show the necessity of joint design of MAC and network coding for throughput and energy-efficient operation of cooperative or competitive users. Finally, we discuss the benefits of network coding for throughput stability in single-hop multicast communication over erasure channels. Deterministic and random coding schemes are introduced to optimize the stable throughput properties. The results extend our understanding of fundamental communication limits and trade-offs in wireless networks.
机译:本文解决了ad hoc无线网络中媒体访问控制(MAC)和网络编码的相互交织的问题。新兴的无线网络应用带来了新的挑战,这些挑战超越了对基于分层架构和协作的有线网络的经典理解。无线网络涉及MAC与网络层之间的强大交互作用,需要在跨层设计框架中与合作和非合作用户共同指定。对于多跳无线网络,我们首先通过详细研究吞吐量和能耗问题来重新发现MAC层计划访问的价值。我们提出了一种分布式时分机制,该机制可以基于任意单接收机MAC协议的稳定运行来激活动态发射机-接收机分配,并消除非预期接收机上的干扰,以实现吞吐量和节能资源分配。除了全面合作之外,我们还考虑了自私用户的竞争性运营,并针对吞吐量,能源和延迟的各个性能目标进行了竞争。我们遵循一种博弈论的方法来评估MAC层的非合作均衡策略,并讨论通过功率和速率控制与物理层的耦合。作为多跳操作的跨层扩展,我们分析了联合MAC和路由的非协同操作,并介绍了用于分组转发的协同激励机制。我们还通过在随机访问和功率控制的MAC中通过拒绝服务攻击的游戏公式研究恶意传播者的影响。作为一种新的联网范例,网络编码通过允许中间发射机在接收到的数据包上进行编码来扩展路由。我们结合MAC介绍了网络编码对无线环境的适应性。我们解决了在稳定运行的跨层优化框架中进行网络编码时出现的新研究问题。我们指定了最大吞吐量和稳定性区域,并显示了针对合作或竞争用户的吞吐量和高能效运营进行MAC和网络编码联合设计的必要性。最后,我们讨论了在擦除通道上单跳多播通信中网络编码对于吞吐量稳定性的好处。引入确定性和随机编码方案以优化稳定的吞吐量属性。结果扩展了我们对基本通信限制和无线网络权衡的理解。

著录项

  • 作者

    Sagduyu, Yalin Evren.;

  • 作者单位

    University of Maryland, College Park.$bElectrical Engineering.;

  • 授予单位 University of Maryland, College Park.$bElectrical Engineering.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 301 p.
  • 总页数 301
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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