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High-accuracy laser spectrometers for wireless trace-gas sensor networks.

机译:用于无线痕量气体传感器网络的高精度激光光谱仪。

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摘要

The subject of this dissertation is the development of a wireless sensor network composed of instruments which employ both VCSELs and QCLs for accurate, highly sensitive, and reliable long-term monitoring of environmental trace-gases. The dissertation focuses on the development of low-power instruments and calibration methods that ensure the reliability of long-term measurements.;First the field deployment of a low-power, portable, wireless laser spectroscopic sensor node for atmospheric CO2 monitoring is demonstrated. The sensor node shows 0.14 ppmv Hz-1/2 1sigma measurement sensitivity of CO2 concentration changes. It was first used to measure top-soil respiration rates in the laboratory and on forest floors in the field.;Then after a long-term field deployment to further assess instrument performance, new design solutions were implemented to improve fringe-limited precision of the nodes to 4-7 ppmv against a 400 ppmv CO2 background, making their performance comparable to higher power consuming commercial trace-gas analyzers. Three optimized nodes were then deployed into mixed landscapes as part of a solar powered CO2 monitoring wireless network. The three node network monitored CO2 in a grassy/woody courtyard, on top of the roof of an engineering building, and next to a road in the Princeton area. These works show that ultra-low powered VCSEL based sensor nodes can be placed in off-the-grid environments for autonomous distributed geographic monitoring of trace-gases in a manner which is impossible with current commercial techniques.;Next, this dissertation covers two techniques that were developed for the real-time calibration of laser-based trace-gas measurements. The first technique used an in-line reference gas cell and employed wavelength modulation spectroscopy (WMS) at higher harmonics to simultaneously probe the sample and reference spectra. The second technique used a revolving in-line reference cell to suppress background and other non-spectroscopic signals. These techniques were designed for eventual inclusion as a real-time calibration source for field deployable trace-gas sensors and wireless sensor networks.;Finally, this dissertation demonstrates the use of the CW injection current into a VCSEL in an external cavity configuration to tune the cavity emission's self-oscillation frequency and show through simulation and experiment that the tuning is dependent on VCSEL birefringence change.
机译:本论文的主题是无线传感器网络的开发,该网络由同时使用VCSEL和QCL的仪器组成,可对环境微量气体进行准确,高度灵敏和可靠的长期监控。论文着重研究了低功耗仪器的开发和确保长期测量可靠性的校准方法。首先,对用于大气二氧化碳监测的低功耗便携式无线激光光谱传感器节点进行了现场部署。传感器节点显示出0.14 ppmv Hz-1 / 2 1sigma的CO2浓度变化测量灵敏度。它首先用于测量实验室和野外森林地面的表层土壤呼吸速率;然后在长期的野外部署以进一步评估仪器性能之后,实施了新的设计解决方案以提高边缘受限的精度在400 ppmv CO2的背景下,其结点可达到4-7 ppmv,使其性能可与功耗更高的商用微量气体分析仪相媲美。然后,将三个优化的节点部署到混合景观中,作为太阳能CO2监控无线网络的一部分。该三节点网络在草木/木质庭院中,工程大楼屋顶上方,普林斯顿地区的道路旁监测二氧化碳。这些工作表明,可以将超低功耗的基于VCSEL的传感器节点放置在离网环境中,以自动方式对痕量气体进行分布式地理监测,这是当前商业技术所无法实现的。接下来,本论文涵盖了两种技术为实时校准基于激光的痕量气体而开发的产品。第一种技术使用在线参考气室,并采用高次谐波的波长调制光谱(WMS)来同时探测样品和参考光谱。第二种技术使用旋转式串联参考池来抑制背景信号和其他非光谱信号。这些技术旨在最终被用作现场可部署的痕量气体传感器和无线传感器网络的实时校准源。最后,本文证明了在外腔配置中将CW注入电流注入VCSEL来调谐腔发射的自激频率并通过仿真和实验表明,调谐取决于VCSEL双折射的变化。

著录项

  • 作者

    Smith, Clinton James.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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