Calibration of IR test chambers with the missile defense transfer radiometer

S. Kaplan, S. I. Woods, A. Carter, T. Jung
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引用次数: 6

Abstract

The Missile Defense Transfer Radiometer (MDXR) is designed to calibrate infrared collimated and flood sources over the fW/cm2 to W/cm2 power range from 3 μm to 28μ m in wavelength. The MDXR operates in three different modes: as a filter radiometer, a Fourier-transform spectrometer (FTS)-based spectroradiometer, and as an absolute cryogenic radiometer (ACR). Since 2010, the MDXR has made measurements of the collimated infrared irradiance at the output port of seven different infrared test chambers at several facilities. We present a selection of results from these calibration efforts compared to signal predictions from the respective chamber models for the three different MDXR calibration modes. We also compare the results to previous measurements made of the same chambers with a legacy transfer radiometer, the NIST BXR. In general, the results are found to agree within their combined uncertainties, with the MDXR having 30 % lower uncertainty and greater spectral coverage.
用导弹防御转移辐射计标定红外试验室
导弹防御转移辐射计(MDXR)用于校准波长为3 μm至28μ m的fW/cm2至W/cm2功率范围内的红外准直源和洪水源。MDXR有三种不同的工作模式:滤波辐射计、基于傅立叶变换光谱仪(FTS)的光谱辐射计和绝对低温辐射计(ACR)。自2010年以来,MDXR已经在几个设施的七个不同红外测试室的输出端口测量了准直红外辐照度。我们将这些校准工作的结果与三种不同MDXR校准模式下各自腔室模型的信号预测结果进行了比较。我们还将结果与以前使用NIST BXR传递辐射计对相同腔室进行的测量结果进行了比较。总的来说,结果在它们的综合不确定度范围内是一致的,MDXR的不确定度降低了30%,光谱覆盖范围更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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