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Minimum detectable gas concentration performance evaluation method for gas leak infrared imaging detection systems

机译:气体泄漏红外成像检测系统的最小可检测气体浓度评估方法

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摘要

Thermal imaging technology is an effective means of detecting hazardous gas leaks. Much attention has been paid to evaluation of the performance of gas leak infrared imaging detection systems due to several potential applications. The minimum resolvable temperature difference (MRTD) and the minimum detectable temperature difference (MDTD) are commonly used as the main indicators of thermal imaging system performance. This paper establishes a minimum detectable gas concentration (MDGC) performance evaluation model based on the definition and derivation of MDTD. We proposed the direct calculation and equivalent calculation method of MDGC based on the MDTD measurement system. We build an experimental MDGC measurement system, which indicates the MDGC model can describe the detection performance of a thermal imaging system to typical gases. The direct calculation, equivalent calculation, and direct measurement results are consistent. The MDGC and the minimum resolvable gas concentration (MRGC) model can effectively describe the performance of "detection" and "spatial detail resolution" of thermal imaging systems to gas leak, respectively, and constitute the main performance indicators of gas leak detection systems. (C) 2017 Optical Society of America
机译:热成像技术是检测危险气体泄漏的有效手段。由于几种潜在应用,已经支付了评估燃气泄漏红外成像检测系统的性能的关注。最小可解变温差(MRTD)和最小可检测温度差(MDTD)通常用作热成像系统性能的主要指标。本文建立了基于MDTD定义和推导的最小可检测气体浓度(MDGC)性能评估模型。我们提出了基于MDTD测量系统的MDGC的直接计算和等效计算方法。我们构建一个实验MDGC测量系统,表示MDGC模型可以将热成像系统的检测性能描述为典型气体。直接计算,等效计算和直接测量结果是一致的。 MDGC和最小可解变气体浓度(MRGC)模型可以有效地描述了热成像系统对气体泄漏的“检测”和“空间细节分辨率”的性能,并构成了气体泄漏检测系统的主要性能指标。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第10期|共8页
  • 作者单位

    Beijing Inst Technol MoE Key Lab Photoelect Imaging Technol &

    Syst Beijing 100081 Peoples R China;

    Beijing Inst Technol MoE Key Lab Photoelect Imaging Technol &

    Syst Beijing 100081 Peoples R China;

    Beijing Inst Technol MoE Key Lab Photoelect Imaging Technol &

    Syst Beijing 100081 Peoples R China;

    Beijing Inst Technol MoE Key Lab Photoelect Imaging Technol &

    Syst Beijing 100081 Peoples R China;

    Beijing Inst Technol MoE Key Lab Photoelect Imaging Technol &

    Syst Beijing 100081 Peoples R China;

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  • 正文语种 eng
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