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Performance analysis of wireless sensor networks in geophysical sensing applications.

机译:地球物理传感应用中无线传感器网络的性能分析。

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摘要

Performance is an important criteria to consider before switching from a wired network to a wireless sensing network. Performance is especially important in geophysical sensing where the quality of the sensing system is measured by the precision of the acquired signal. Can a wireless sensing network maintain the same reliability and quality metrics that a wired system provides?;Our work focuses on evaluating the wireless GeoMote sensor motes that were developed by previous computer science graduate students at Mines. Specifically, we conducted a set of experiments, namely WalkAway and Linear Array experiments, to characterize the performance of the wireless motes. The motes were also equipped with the Sticking Heartbeat Aperture Resynchronization Protocol (SHARP), a time synchronization protocol developed by a previous computer science graduate student at Mines. This protocol should automatically synchronize the mote's internal clocks and reduce time synchronization errors. We also collected passive data to evaluate the response of GeoMotes to various frequency components associated with the seismic waves.;With the data collected from these experiments, we evaluated the performance of the SHARP protocol and compared the performance of our GeoMote wireless system against the industry standard wired seismograph system (Geometric-Geode). Using arrival time analysis and seismic velocity calculations, we set out to answer the following question. Can our wireless sensing system (GeoMotes) perform similarly to a traditional wired system in a realistic scenario?
机译:性能是从有线网络切换到无线传感网络之前要考虑的重要标准。在地球物理传感中,性能尤其重要,在该传感中,传感系统的质量由所采集信号的精度来衡量。无线传感网络能否保持与有线系统相同的可靠性和质量指标?;我们的工作重点是评估由Mines的先前计算机科学研究生开发的无线GeoMote传感器节点。具体来说,我们进行了一组实验,即WalkAway和线性阵列实验,以表征无线节点的性能。微粒还配备了“粘滞心跳孔径再同步协议”(SHARP),这是由Mines的先前计算机科学研究生开发的时间同步协议。该协议应自动同步节点的内部时钟并减少时间同步错误。我们还收集了无源数据以评估GeoMotes对与地震波相关的各种频率分量的响应;通过这些实验收集的数据,我们评估了SHARP协议的性能并将我们的GeoMote无线系统的性能与行业进行了比较标准有线地震仪系统(Geometric-Geode)。使用到达时间分析和地震速度计算,我们着手回答以下问题。在现实情况下,我们的无线传感系统(GeoMotes)能否与传统的有线系统具有类似的性能?

著录项

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Computer science.;Geophysics.
  • 学位 M.S.
  • 年度 2016
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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