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Routing, deployment and in-network aggregation strategies in wireless sensor networks.

机译:无线传感器网络中的路由,部署和网络内聚合策略。

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摘要

A wireless sensor network consists of a set of mostly battery-powered sensors and is used for environmental monitoring, event tracking, security, and system control. Each sensor network can be treated as a distributed database system that provides various types of query services to end users. One important factor, the constrained energy resource of sensors, limits the lifetime of a sensor network. For a sensor network with uniformly distributed homogenous sensors and a stationary sink, one observation is that the energy of the sensors near the sink is depleted much faster than that of the sensors that are distant from the sink. When the neighbor sensors of the sink exhaust their energy, the sink is disconnected from the network, and the lifetime of the sensor network is over, even though there is still a large amount of unused energy in the remaining sensors. Hence, how to efficiently utilize the unused energy to prolong the lifetime of the energy constrained sensor networks presents design challenges of all the levels of the sensor network protocol stack.; In this dissertation, three important factors: routing techniques, sensor deployment, and in-network data aggregation, are taken into account to extend the lifetime of sensor networks. The designs related to these three factors are not independent of each other. By considering these factors, four sensor deployment strategies and their related routing protocols are proposed to support various types of queries. In the first strategy, mobile sinks are used in sensor networks with uniform sensor distribution. The second and third strategies employ non-uniform energy distribution models to extend the lifetime of sensor networks. Based on the non-uniform energy distribution models, their associated routing protocols are also presented. Finally, for sensor networks with uniformly distributed sensors and a stationary sink, a broadcasting-based routing scheme is suggested to slow down the energy depletion rate of the sensors near the sink and to efficiently support aggregative queries. Compared with existing approaches, the four strategies have a significant performance gain in terms of the total number of queries handled by the network.
机译:无线传感器网络由一组主要由电池供电的传感器组成,用于环境监视,事件跟踪,安全性和系统控制。可以将每个传感器网络视为一个分布式数据库系统,该系统为最终用户提供各种类型的查询服务。一个重要的因素,即传感器的能源受限,限制了传感器网络的寿命。对于具有均匀分布的均匀传感器和固定接收器的传感器网络,一个观察结果是,靠近接收器的传感器的能量消耗比远离接收器的传感器的能量消耗快得多。当接收器的相邻传感器耗尽能量时,接收器与网络断开连接,并且即使在剩余的传感器中仍有大量未使用的能量,传感器网络的使用寿命也已结束。因此,如何有效地利用未使用的能量来延长能量受限的传感器网络的寿命提出了传感器网络协议栈所有级别的设计挑战。本文考虑了三个重要因素:路由技术,传感器部署和网络内数据聚合,以延长传感器网络的寿命。与这三个因素有关的设计不是彼此独立的。通过考虑这些因素,提出了四种传感器部署策略及其相关的路由协议来支持各种类型的查询。在第一种策略中,移动接收器用于传感器网络中的传感器分布均匀。第二和第三种策略采用非均匀能量分布模型来延长传感器网络的寿命。基于非均匀能量分配模型,还介绍了它们的关联路由协议。最后,对于具有均匀分布的传感器和固定接收器的传感器网络,建议采用基于广播的路由方案,以减慢接收器附近传感器的能量消耗率,并有效地支持聚合查询。与现有方法相比,从网络处理的查询总数来看,这四种策略的性能都有显着提高。

著录项

  • 作者

    Lian, Jie.;

  • 作者单位

    University of Waterloo (Canada).;

  • 授予单位 University of Waterloo (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 150 p.
  • 总页数 150
  • 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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