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Spatial heterodyne spectrometer: modeling and interferogram processing for calibrated spectral radiance measurements

机译:空间外差光谱仪:用于校准光谱辐射率测量的建模和干涉图处理

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This work presents a radiometric model of a spatial heterodyne spectrometer (SHS) and a corresponding interferogram-processing algorithm for the calculation of calibrated spectral radiance measurements. The SHS relies on Fourier Transform Spectroscopy (FTS) principles, and shares design similarities with the Michelson Interferometer. The advantages of the SHS design, including the lack of moving parts, high throughput, and instantaneous spectral measurements, make it suitable as a field-deployable instrument. Operating in the long-wave infrared (LWIR), the imaging SHS design example included provides the capability of performing chemical detection based on reflectance and emissivity properties of surfaces of organic compounds. This LWIR SHS model outputs realistic, interferometric data and serves as a tool to find optimal SHS design parameters for desired performance requirements and system application. It also assists in the data analysis and system characterization. The interferogram-processing algorithm performs flat-fielding and phase corrections as well as apodization before recovering the measured spectral radiance from the recorded interferogram via the Inverse Fourier Transform (IFT). The model and processing algorithm demonstrate results comparable to those in the literature with a noise-equivalent change in temperature of 0.35K. Additional experiments show the algorithm's real-time processing capability, indicating the LWIR SHS system presented is feasible.
机译:这项工作介绍了空间外差光谱仪(SHS)的辐射模型以及用于计算校准光谱辐射率测量值的相应干涉图处理算法。 SHS依赖于傅立叶变换光谱(FTS)原理,并且与迈克尔逊干涉仪具有相似的设计。 SHS设计的优点包括缺少活动部件,高通量和瞬时光谱测量,使其适合现场部署。在长波红外(LWIR)中运行,包括的成像SHS设计示例提供了基于有机化合物表面的反射率和发射率特性执行化学检测的功能。该LWIR SHS模型输出现实的干涉数据,并用作查找针对所需性能要求和系统应用的最佳SHS设计参数的工具。它还有助于数据分析和系统表征。干涉图处理算法在通过逆傅立叶变换(IFT)从记录的干涉图中恢复测得的光谱辐射率之前,会执行平场校正和相位校正以及切趾处理。该模型和处理算法证明了与文献中的结果相当的结果,等效温度变化为0.35K。额外的实验表明了该算法的实时处理能力,表明所提出的LWIR SHS系统是可行的。

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