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Development of tunable optical filters for interrogation of white-light interferometric sensors.

机译:用于询问白光干涉传感器的可调滤光片的开发。

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摘要

Interferometric fiber optic sensors have been extensively used to measure a large variety of physical, chemical and biomedical parameters due to their superior performance. At the Center for Photonics Technology of Virginia Tech, a variety of interferometric fiber optic sensors have been developed in recent years, for efficient oil recovery, partial discharge detection in high voltage transformers, pressure sensing in gas turbine engines, and temperature measurements in gasifiers and boilers. However, interrogating an interferometric sensor involves accurate recovery of a measurand from the phase-modulated lightwaves, and has been a challenge for high performance, high speed, and low-cost, to current white-light interferometry (WLI) techniques, such as the widely used scanning WLI (S-WLI) and spectral-domain WLI (SD-WLI). The performance of a white-light interferometric sensing system depends not only on the design of the probes, but also, to a great extent, on the interrogation strategy to be used.; In this Ph.D. research, a tunable optical filter based WLI (TOF-WLI) is proposed and validated as a low cost, yet high performance, solution to the interrogation of various types of interferometric sensors. In addition to the capability of linear/quadrature demodulation, TOF-WLI retains all the features of WLI, is compatible with the SD-WLI, and can be tailored for both static and wideband signals. It also has great potential in surface metrology and biomedical imaging as well as optical spectroscopy. The key, to the success of this new approach in competition with the other available WLI techniques, is that the tunable optical filter (TOF) must be specially designed for sensing and extremely low cost. Therefore, two novel TOFs, a diffraction grating tunable filter (DG-TOF) and an extrinsic Fabry-Perot tunable filter (EFP-TF), are proposed and demonstrated. Laboratory and field test results on using the DG-TOF WLI for partial discharge and thermal fault detection in high voltage power transformers, and the EFP-TF WLI in temperature sensor systems and a turbine engine monitoring system will also be presented to demonstrate the feasibility for efficient sensor interrogation.
机译:干涉式光纤传感器由于其卓越的性能已被广泛用于测量各种物理,化学和生物医学参数。近年来,在弗吉尼亚理工大学的光子学技术中心,开发了多种干涉式光纤传感器,以实现有效的采油,高压变压器中的局部放电检测,燃气轮机发动机中的压力感应以及气化炉中的温度测量。锅炉。然而,询问干涉式传感器涉及从相位调制的光波中准确地恢复被测量物,并且对于高性能,高速和低成本的现有白光干涉仪(WLI)技术(例如,光散射技术)提出了挑战。广泛使用的扫描WLI(S-WLI)和光谱域WLI(SD-WLI)。白光干涉传感系统的性能不仅取决于探头的设计,而且在很大程度上取决于要使用的询问策略。在这个博士学位在研究中,提出了一种基于WLI的可调谐光学滤波器(TOF-WLI),并被认为是一种低成本,高性能的询问各种类型的干涉传感器的解决方案。除了具有线性/正交解调功能外,TOF-WLI保留了WLI的所有功能,与SD-WLI兼容,并且可以针对静态和宽带信号进行定制。它还在表面计量学,生物医学成像以及光谱学方面具有巨大潜力。与其他可用的WLI技术竞争时,这种新方法成功的关键在于,可调光滤波器(TOF)必须专门为传感而设计,并且成本极低。因此,提出并展示了两种新型的TOF,即衍射光栅可调滤光片(DG-TOF)和非本征Fabry-Perot可调滤光片(EFP-TF)。还将提供有关使用DG-TOF WLI在高压电力变压器中进行局部放电和热故障检测以及在温度传感器系统和涡轮发动机监控系统中使用EFP-TF WLI的实验室和现场测试结果,以证明用于以下目的的可行性:有效的传感器询问。

著录项

  • 作者

    Yu, Bing.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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