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Reliable and energy-efficient data collection in wireless sensor networks.

机译:无线传感器网络中可靠且节能的数据收集。

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摘要

In recent years, wireless sensor networks (WSNs) have attracted significant attentions from both academia and industry, and are widely proposed for a broad range of applications, where data collection is often a core service to facilitate sensed data being forwarded to a central base station for further processing. Powered by batteries and using wireless communications, a WSN is more flexible than its wired counterpart. However, wireless losses/collisions may be prevalent when nodes communicate with each other. Moreover, the lifetime of a WSN largely depends on that of individual nodes, which is further constrained by the generally non-replenishable batteries. Energy efficiency thus becomes a critical concern that must be addressed.;In practice, using WSNs for data collection can be broken into three major stages, namely, deployment, message dissemination and data delivery. The deployment stage focuses on best deploying the network in the sensing field. In the message dissemination stage, network setup/management and/or collection command messages are disseminated from the base station to all sensor nodes, where the challenges lie in how to disseminate messages with low transmission costs and latencies in the presence of error-prone wireless communications. The data delivery stage fulfills the main task of data collection. Based on the information indicated by the message dissemination stage, sensed data are gathered at different nodes and delivered to the base station, with application-specified Quality-of-Service requirements to be fulfilled.;In this thesis, we tackle the design issues for each of these stages. For the deployment stage, we propose to use relay nodes for traffic relaying and suggest that the deployment should be aware of the data traffic to be collected by specific applications. We then discuss how to efficiently disseminate message in a low duty-cycle scenario, where nodes alternate between active and dormant states to conserve energy and thus extend the network lifetime. To address the traffic accumulation problem, particularly in the data delivery stage, we take a case study on high-rise structure monitoring application and propose to use elevators to facilitate data collection. Our analysis and experimental results offer systematic solutions toward reliable and energy-efficient data collection by WSNs.
机译:近年来,无线传感器网络(WSN)引起了学术界和工业界的极大关注,并被广泛建议用于广泛的应用,在这些应用中,数据收集通常是核心服务,以促进将感测到的数据转发到中央基站进行进一步处理。由电池供电并使用无线通信,WSN比其有线同类产品更具灵活性。但是,当节点彼此通信时,无线丢失/冲突可能很普遍。而且,WSN的寿命在很大程度上取决于各个节点的寿命,这进一步受到通常不可补充的电池的限制。因此,能源效率成为必须解决的关键问题。在实践中,使用WSN进行数据收集可分为三个主要阶段,即部署,消息分发和数据传递。部署阶段着重于在传感领域中最佳部署网络。在消息传播阶段,网络设置/管理和/或收集命令消息从基站传播到所有传感器节点,其中的挑战在于如何在容易出错的无线环境下以低传输成本和延迟传播消息通讯。数据交付阶段完成了数据收集的主要任务。根据消息传播阶段指示的信息,将感测到的数据收集在不同的节点上并传递到基站,以满足特定于应用程序的服务质量要求。每个阶段。在部署阶段,我们建议使用中继节点进行流量中继,并建议部署应了解要由特定应用程序收集的数据流量。然后,我们讨论了如何在低占空比情况下有效地传播消息,在这种情况下,节点在活动状态和休眠状态之间交替以节省能量,从而延长了网络寿命。为了解决交通堆积问题,特别是在数据传递阶段,我们以高层建筑监控应用为例,并建议使用电梯来促进数据收集。我们的分析和实验结果为WSN可靠而节能的数据收集提供了系统的解决方案。

著录项

  • 作者

    Wang, Feng.;

  • 作者单位

    Simon Fraser University (Canada).;

  • 授予单位 Simon Fraser University (Canada).;
  • 学科 Computer science.;Engineering.;Computer engineering.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

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