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Imaging Remote Sensing Fourier Transform Spectrometer with a Focal Plane Array Detector: First Measurements

机译:成像遥感傅立叶变换光谱仪,焦平面阵列检测器:首先测量

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Passive remote sensing by infrared spectrometry allows detection and identification of hazardous clouds from long distances. Typical applications of the method are automatic surveillance of industrial facilities and identification of hazardous clouds after chemical accidents. A conventional remote sensing Fourier transform infrared spectrometer is based on an interferometer with a single detector element. The output of the system is usually a yes/no decision by an automatic identification algorithm that analyses the measured spectrum. The analysis of the measured spectrum by the operator is complicated and thus this task requires an expert. Even if a scanning system is used for surveillance of a large area the operator is dependent on the decision of the algorithm. In contrast to that, imaging systems allow automatic identification but also simple interpretation of the result, the image of the cloud. An imaging spectrometer with these capabilities is the scanning infrared gas imaging system (SIGIS). The system is based on an interferometer with a single detector element in combination with a telescope and a synchronized scanning mirror. The results of the analyses of the spectra are displayed by an overlay of a false color image, the "hazardous chemical image", on a video image. However, the temporal resolution of the system is limited by the sequential measurement of all fields of view within the field of regard. In order to measure a complete image by a single scan of the interferometer, an imaging Fourier-transform spectrometer (IFTS) with a detector array instead of a single detector element is currently being developed at TUHH. In this work, the first measurements are presented.
机译:红外光谱法的被动遥感允许检测和识别远距离的危险云。该方法的典型应用是在化学事故后自动监测工业设施和危险云的识别。传统的遥感傅里叶变换红外光谱仪基于具有单个检测器元件的干涉仪。系统的输出通常是通过分析测量频谱的自动识别算法是是/否决定。操作员的测量光谱分析复杂,因此该任务需要专家。即使扫描系统用于监控大面积,操作员也取决于算法的决定。与此相反,成像系统允许自动识别,但也可以简单地解释结果,云的图像。具有这些能力的成像光谱仪是扫描红外气体成像系统(Sigis)。该系统基于具有单个检测器元件的干涉仪,与望远镜和同步扫描镜相结合。光谱的分析结果由假彩图像,“危险化学图像”,视频图像上的覆盖显示。然而,系统的时间分辨率受到在方面内的所有视野的顺序测量的限制。为了通过干涉仪的单个扫描测量完整图像,目前在Tuhh开发了具有检测器阵列而不是单个检测器元件的成像傅里叶变换光谱仪(IFTS)。在这项工作中,提出了第一次测量。

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