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Resource management algorithms for real-time wireless sensor networks with applications in cyber-physical systems.

机译:实时无线传感器网络的资源管理算法及其在网络物理系统中的应用。

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摘要

Wireless Sensor Networks (WSN) are playing a key role in the efficient operation of Cyber Physical Systems (CPS). They provide cost efficient solutions to current and future CPS requirements such as real-time structural awareness, faster event localization, cost reduction due to condition based maintenance rather than periodic maintenance, increased opportunities for real-time preventive or corrective control action and fine grained diagnostic analysis. However, there are several critical challenges in the real world applicability of WSN. The low power, low data rate characteristics of WSNs coupled with constraints such as application specified latency and wireless interference present challenges to their efficient integration in CPSs. The existing state of the art solutions lack methods to address these challenges that impediment the easy integration of WSN in CPS.;This dissertation develops efficient resource management algorithms enabling WSNs to perform reliable, real-time, cost efficient monitoring. This research addresses three important problems in resource management in the presence of different constraints such as latency, precedence and wireless interference constraints. Additionally, the dissertation proposes a solution to deploy WSNs based real-time monitoring of critical infrastructure such as electrical overhead transmission lines.;Firstly, design and analysis of an energy-aware scheduling algorithm encompassing both computation and communication subsystems in the presence of deadline, precedence and interference constraints is presented. The energy-delay tradeoff presented by the energy saving technologies such as Dynamic Voltage Scaling (DVS) and Dynamic modulation Scaling (DMS) is studied and methods to leverage it by way of efficient schedule construction is proposed. Performance results show that the proposed polynomial-time heuristic scheduling algorithm offers comparable energy savings to that of the analytically derived optimal solution.;Secondly, design, analysis and evaluation of adaptive online algorithms leveraging run- time variations is presented. Specifically, two widely used medium access control schemes are considered and online algorithms are proposed for each. For one, temporal correlation in sensor measurements is exploited and three heuristics with varying complexities are proposed to perform energy minimization using DMS. For another, an adaptive algorithm is proposed addressing channel and load conditions at a node by influencing the selection of either low energy or low delay transmission option. In both cases, the simulation results show that the proposed schemes provide much better energy savings as compared to the existing algorithms.;The third component presents design and evaluation of a WSN based framework to mon- itor a CPS namely, electrical overhead transmission line infrastructure. The cost optimized hybrid hierarchical network architecture is composed of a combination of wired, wireless and cellular technologies. The proposed formulation is generic and addresses constraints such as bandwidth and latency; and real world scenarios such as asymmetric sensor data generation, unreliable wireless link behavior, non-uniform cellular coverage and is suitable for cost minimized incremental future deployment.;In conclusion, this dissertation addresses several challenging research questions in the area of resource management in WSNs and their applicability in future CPSs through associated algorithms and analyses. The proposed research opens up new avenues for future research such as energy management through network coding and fault diagnosis for reliable monitoring.
机译:无线传感器网络(WSN)在网络物理系统(CPS)的高效运行中起着关键作用。它们为当前和将来的CPS要求提供了经济高效的解决方案,例如实时结构感知,更快的事件定位,由于基于条件的维护而不是定期维护而降低了成本,增加了实时预防或纠正控制措施以及细粒度诊断的机会分析。但是,WSN在现实世界中的适用性存在几个关键挑战。 WSN的低功耗,低数据速率特性,加上诸如应用程序指定的等待时间和无线干扰等约束条件,给它们在CPS中的有效集成带来了挑战。现有的最先进的解决方案缺乏解决这些难题的方法,这些难题阻碍了WSN在CPS中的轻松集成。本论文开发了有效的资源管理算法,使WSN能够执行可靠,实时,成本有效的监视。这项研究解决了在存在诸如延迟,优先级和无线干扰约束之类的不同约束的情况下资源管理中的三个重要问题。此外,本文还提出了一种基于WSN的对关键基础设施(如电力架空传输线)进行实时监控的解决方案。首先,在存在截止期限的情况下,一个包含计算和通信子系统的能源感知调度算法的设计和分析,优先级和干扰约束。研究了诸如动态电压缩放(DVS)和动态调制缩放(DMS)等节能技术所提出的能量延迟权衡,并提出了通过有效的调度表构建来利用该方法的方法。性能结果表明,所提出的多项式时间启发式调度算法与解析得出的最优解决方案相比具有节能效果。其次,提出了利用运行时间变化的自适应在线算法的设计,分析和评估。具体而言,考虑了两种广泛使用的媒体访问控制方案,并针对每种方案提出了在线算法。首先,利用传感器测量中的时间相关性,并提出了三种具有不同复杂度的启发式方法,以使用DMS进行能量最小化。另一方面,提出了一种自适应算法,该算法通过影响低能量或低延迟传输选项的选择来解决节点上的信道和负载情况。在这两种情况下,仿真结果均表明,与现有算法相比,所提出的方案具有更好的节能效果。第三部分提出了基于WSN的框架的设计和评估,以监控CPS,即电力架空传输线基础设施。成本优化的混合分层网络架构由有线,无线和蜂窝技术的组合组成。拟议的表述是通用的,解决了诸如带宽和等待时间的限制;以及现实世界中的场景,例如传感器数据的不对称生成,不可靠的无线链路行为,不均匀的蜂窝覆盖以​​及适合于将成本最小化的未来增量部署。;总而言之,本论文解决了无线传感器网络中资源管理领域中的几个具有挑战性的研究问题以及它们通过相关算法和分析在未来CPS中的适用性。拟议的研究为未来的研究开辟了新的途径,例如通过网络编码进行能量管理以及进行可靠监控的故障诊断。

著录项

  • 作者

    Fateh, Benazir.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 138 p.
  • 总页数 138
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:06

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