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Multi-point fiber optic gas sensor systems.

机译:多点光纤气体传感器系统。

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摘要

Multiplexing is a very important issue for fiber optic sensors. It enhances the system utilization and the competitiveness of fiber sensors against conventional technologies. It is believed that an increasing attention will focus in this area in the coming years. The main objective of this project is to develop and investigate multi-point gas detection systems for quantitative measurement. Two different multiplexing systems for fiber optic gas sensors, one named time-division-multiplexed (TDM) system, the other frequency modulated continuous wave (FMCW) system, are investigated theoretically and experimentally in this project.; Quantitative measurement of gas concentration based on wavelength modulation spectroscopy (WMS) and second-harmonic detection is demonstrated by applying low-frequency wavelength modulation to an external-cavity tunable diode laser. The tunable laser operating at 1.53 μm region is used to detect acetylene (C2H2) based on direct absorption through the use of micro-optic cells. A time-division multiplexed three-sensor system with a forward-coupled ladder topology have been implemented and experimentally tested. The experimental system using micro-optic cells of length 25mm have demonstrated sensitivity of 81 ppm/ Hz . The crosstalk between the sensors was found to be −30 dB. Power budget analysis shows that a sensor network consisting of 90 sensors could be realized with the same multiplexing topology. The performance of such a networked system has been examined in terms of shot noise limit, inter-channel crosstalk and detection sensitivity.; Apart from the TDM techniques, we also applied a frequency modulated continuous wave (FMCW) technique for multiplexing optical fiber gas sensors. The sensor network is again of a ladder topology and is interrogated by the same tunable laser. For the FMCW system, the optical delays of each channel are carefully designed in order to satisfy the basic requirements that will be discussed in the following chapters. The system performance in terms of detection sensitivity and crosstalk between sensors was investigated and found limited by the coherent mixing between signals from different channels. The system performance can be improved significantly by use of appropriate wavelength modulation/scanning coupled with low pass filtering. Computer simulation shows that an array of 37 acetylene sensors with a detection accuracy of 2000ppm for each sensor may be realized. A three-sensor network of ladder topology is experimentally demonstrated for the detection of acetylene gas. A minimum detectable concentration of 270 ppm/ Hz is obtained with 25mm gas cells under atmospheric pressure which corresponds to a minimum detectable absorbance of 1.48 ×10−4/ Hz . The crosstalk between the sensors is below −20 dB.
机译:对于光纤传感器,复用是一个非常重要的问题。与传统技术相比,它可以提高系统利用率和光纤传感器的竞争力。人们认为,在未来几年中,越来越多的关注将集中在这一领域。该项目的主要目的是开发和研究用于定量测量的多点气体检测系统。该项目在理论上和实验上研究了两种用于光纤气体传感器的不同复用系统,一个称为时分复用(TDM)系统,另一个称为调频连续波(FMCW)系统。通过将低频波长调制应用于外腔可调谐二极管激光器,证明了基于波长调制光谱(WMS)和二次谐波检测的气体浓度定量测量。在1.53μm范围内运行的可调激光器用于通过使用微光学细胞进行直接吸收来检测乙炔(C 2 H 2 )。具有前向耦合梯形拓扑的时分多路复用三传感器系统已经实现并进行了实验测试。使用长度为25mm的微光学元件的实验系统已证明灵敏度为81 ppm / Hz 。发现传感器之间的串扰为-30 dB。功率预算分析表明,由90个传感器组成的传感器网络可以使用相同的多路复用拓扑来实现。已经从散粒噪声限制,通道间串扰和检测灵敏度方面检查了这种网络系统的性能。除了TDM技术外,我们还应用了调频连续波(FMCW)技术来复用光纤气体传感器。传感器网络还是梯形拓扑结构,并由相同的可调激光器询问。对于FMCW系统,每个通道的光延迟均经过精心设计,以满足基本要求,以下几章将对此进行讨论。研究了系统在检测灵敏度和传感器之间的串扰方面的性能,发现该性能受到不同通道信号之间相干混合的限制。通过使用适当的波长调制/扫描以及低通滤波,可以显着提高系统性能。计算机仿真表明,可以实现37个乙炔传感器的阵列,每个传感器的检测精度为2000ppm。实验证明了梯形拓扑的三传感器网络可用于检测乙炔气体。使用25mm气室在大气压力下获得的最低可检测浓度为270 ppm / Hz 最小可检测吸光度为1.48×10 −4 / Hz 。传感器之间的串扰低于-20 dB。

著录项

  • 作者

    Ho, Hoi Lut.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering System Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 系统科学;
  • 关键词

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