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Multi-point Radiometric Calibration Method Based on Complex Spectrum of Fourier Transform Spectrometer

机译:基于傅立叶变换光谱仪复谱的多点辐射定标方法

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As the impact of the instrument internal error, external interference and other factors, the interferogram measured by Fourier transform spectrometer is asymmetric, result in the complex outcome after Fourier transform. Currently, most radiometric calibration method used for Fourier transform spectrometer is usually based on real spectrums, which is converted from the above complex spectrum by calculating magnitude value or make the phase correction first. Proceed from error sources and mechanisms of the Fourier transform spectrometer, we propose a multi-point radiometric calibration method based on complex spectral data to improve the processing efficiency and accuracy, which is obtained by the original interferogram via Fourier transform. We solving the instrument response function include linear gain and offset by complex spectrum above to calculate complex spectral radiance. Compared with the traditional method based on real spectrum, the present efficient method does not limited to real spectrum and the phase correction is not required. In this paper, we use BOMEM's MR304 Fourier transform infrared spectrometer and the DCN1000N3 blackbody made by HGH Infrared Systems to carry out the radiation calibration experiment in laboratory. The results show that, the amplitude of complex radiance spectrum obtained by this method has a high consistency with the theoretical value, while the extra imaginary spectrum is similar with the difference between results and theoretical value in absolute value and trends. It proved that, this multi-point radiometric calibration method by using the amplitude of complex spectral data is highly reliable; meanwhile, the imaginary spectrum can reflect the calibration error very well and offer a new technical approach for accuracy evaluation research.
机译:由于仪器内部误差,外部干扰等因素的影响,傅里叶变换光谱仪测得的干涉图是不对称的,导致傅里叶变换后的结果复杂。当前,用于傅立叶变换光谱仪的大多数辐射定标方法通常基于真实光谱,该真实光谱是通过计算幅度值或首先进行相位校正从上述复杂光谱转换而来的。从傅立叶变换光谱仪的误差来源和机理出发,提出了一种基于复杂光谱数据的多点辐射定标方法,以提高处理效率和精度,该方法是通过原始干涉图通过傅立叶变换获得的。我们求解的仪器响应函数包括线性增益和上述复杂频谱的偏移量,以计算复杂频谱的辐射度。与基于实谱的传统方法相比,本发明的有效方法不限于实谱,并且不需要相位校正。本文采用BOMEM公司的MR304傅里叶变换红外光谱仪和HGH红外系统公司生产的DCN1000N3黑体在实验室进行辐射定标实验。结果表明,该方法获得的复辐射光谱的幅度与理论值具有较高的一致性,而虚部光谱相似,其结果与理论值的绝对值和趋势之间存在差异。实践证明,这种利用复杂光谱数据幅度的多点辐射定标方法具有很高的可靠性。同时,虚频谱可以很好地反映校准误差,为精度评估研究提供了一种新的技术手段。

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