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Application Performance-Driven Design and Management of Sensor Networks.

机译:应用性能驱动的传感器网络设计和管理。

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摘要

With increasing high-fidelity and real-time decision-making applications for Wireless Sensor Networks (WSNs), it becomes necessary to investigate WSN deployment designs with particular focuses on satisfying application-specific performance requirements, such as reconstruction fidelity, detection performance, and response latency.;The primary concern of this work is the development of a framework that structures the fundamental steps in performance-driven designs for event detection WSNs, and facilitates analysis of their expected performance prior to actual deployments. At the heart of the proposed framework is a set of procedures to alleviate the selection of detection schemes that provide guarantees on accuracy and latency requirements.;Techniques based on hypothesis testing and Maximum Likelihood estimation have been used, respectively, for detection and tracking purposes in WSNs. In this study, the expected performance of these techniques is analytically studied for WSN deployments. The proposed extensions allow the designer to select the appropriate system parameters such that required performance metrics are ensured.;A major factor affecting the decision-making performance is the presence of faulty behaviors in sensor data. An important component of the present work is the development of a general two-tiered fault detection that is particularly integrated with the proposed event detection scheme. Such a coupled procedure progressively detects faulty behaviors, isolates faulty sensors, and improves detection accuracy.;Several aspects of the proposed framework are verified and validated through its application to real and synthetic data.
机译:随着无线传感器网络(WSN)的高保真度和实时决策应用程序的增加,有必要研究WSN部署设计,尤其要着重于满足特定于应用程序的性能要求,例如重构保真度,检测性能和响应。这项工作的主要关注点是开发一个框架,该框架构造事件检测WSN的性能驱动设计中的基本步骤,并有助于在实际部署之前分析其预期性能。拟议框架的核心是一套减轻检测方案选择的程序,这些程序可保证准确性和等待时间要求。;在假设检测和跟踪目的中,分别使用了基于假设检验和最大似然估计的技术。无线传感器网络。在这项研究中,针对WSN部署对这些技术的预期性能进行了分析研究。拟议的扩展允许设计人员选择适当的系统参数,从而确保所需的性能指标。影响决策性能的主要因素是传感器数据中存在错误行为。当前工作的重要组成部分是开发一种通用的两层故障检测,该故障检测与提出的事件检测方案特别集成在一起。这种耦合过程逐渐检测出错误行为,隔离了故障传感器,并提高了检测准确性。通过将其应用于实际数据和综合数据,对所提出框架的几个方面进行了验证和确认。

著录项

  • 作者

    Zahedi, Sadaf.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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