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Robust routing and energy management in wireless sensor networks.

机译:无线传感器网络中的鲁棒路由和能量管理。

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摘要

Wireless sensor networks are deployed in a wide range of applications such as habitat, environmental, and structural health monitoring. These networks have several sources of dynamics across the wireless protocol stack, which make it challenging to build robust systems. Sensor network systems must adapt to these dynamics while remaining efficient. There is an emerging class of dynamically-taskable sensor networks that can support multiple and concurrent applications. In such networks, of which Tenet is an example, the protocols must adapt to the changing application workload. The dynamics at the physical, link, and network layers directly affect routing and forwarding protocol performance. The quality of wireless channel or the network topology can change rapidly even in a stationary network. The routing protocols must quickly detect these dynamics and take steps to maintain robust and efficient routing paths. We use Application-informed Energy Management (AEM) and Collection Tree Protocol (CTP) as case studies in our study of the type of dynamics present in sensor networks and present techniques that make these protocols robust and energy-efficient. AEM can adapt to the application dynamics at the time scale of application injection and link layer dynamics at the time scale of link quality changes to provide robust and efficient duty-cycles in sensor networks. CTP can adapt to the changes in physical and link layers at the time-scale of link coherence and packet transmissions, and changes in network topology at the time-scale of network events such as node introduction, deletion, and topology changes. Our findings suggest that agility at the time scale of the dynamics is critical to the design of robust and energy-efficient protocols.
机译:无线传感器网络被部署在广泛的应用中,例如栖息地,环境和结构健康监控。这些网络在无线协议栈中具有多种动态来源,这使得构建健壮的系统具有挑战性。传感器网络系统必须适应这些动态变化,同时保持高效。新兴的一类可动态执行任务的传感器网络可以支持多个并发应用程序。在以Tenet为例的此类网络中,协议必须适应不断变化的应用程序工作负载。物理,链路和网络层的动态直接影响路由和转发协议的性能。即使在固定网络中,无线信道或网络拓扑的质量也会快速变化。路由协议必须快速检测到这些动态,并采取步骤维护健壮和有效的路由路径。在我们研究传感器网络中存在的动力学类型以及使这些协议健壮且高效节能的技术的研究中,我们以案例研究为研究对象,使用了应用信息能源管理(AEM)和收集树协议(CTP)。 AEM可以在应用程序注入的时间尺度上适应应用程序动态,并在链路质量变化的时间尺度上适应链路层动态,从而在传感器网络中提供强大而有效的占空比。 CTP可以在链路一致性和数据包传输的时间尺度上适应物理层和链路层的变化,并在网络事件(例如节点引入,删除和拓扑变化)的时间尺度上适应网络拓扑的变化。我们的发现表明,动态时间尺度上的敏捷性对于设计健壮且节能的协议至关重要。

著录项

  • 作者

    Gnawali, Om Prakash Dev.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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