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A tunable filter comparator for the spectral calibration of near-ambient temperature blackbodies

机译:可调谐滤波器比较器,用于对附近环境温度黑体的光谱进行校准

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The calibration of infrared (IR) radiometers, thermal imagers and electro-optical systems relies on use of extended area blackbodies (BB) operating in the ambient environment. "Flat plate" designs, typically using a thermoelectric heat pump backed with an air- or liquid-cooled radiator, allow one to adequately meet the requirements of geometrical size and temperature span. The tradeoff comes in the form of limited temperature uniformity and lower emissivity that such an approach can provide given the limitations in achievable thermal conductivity of the plate and reflectance of the black paint, respectively.The availability of spectrally resolved radiance temperature data for infrared calibrators has become especially vital in the last few years with the widespread use of multi- and hyper-spectral electro-optical systems that enable better detection and identification of targets. In an effort to increase the measurement accuracy of IR spectral radiance of near-ambient BB calibrators, NIST has recently built a dedicated capability which is a part of its new AIRI (Advanced Infrared Radiometry and Imaging) facility. The Tunable Filter Comparator (TFC) is a key new element in this setup, allowing us to perform a precise comparison of the unit under test (UUT) with two reference blackbodies of known temperatures and emissivity. The report describes the major design features of the TFC comparator, the algorithm used for signal processing, and results of a performance evaluation of the TFC. The TFC development has enabled us to achieve BB radiance temperature comparisons with a standard deviation of 5 to 15 mK at temperatures of 15-150 C across the 3 to 5 μm and 8 to 12 μm atmospheric band ranges with a relative spectral resolution of 2 to 3 %.
机译:红外(IR)辐射计,热成像仪和光电系统的校准取决于在周围环境中使用的扩展区域黑体(BB)的使用。 “平板”设计通常使用热电热泵,其后附有风冷或液冷散热器,可使人们充分满足几何尺寸和温度跨度的要求。折衷的形式是有限的温度均匀性和较低的发射率,因此这种方法可以分别提供可实现的板的导热性和黑色涂料的反射率的限制。红外校准器的光谱分辨辐射温度数据的可用性在过去的几年中,随着能够更好地检测和识别目标的多光谱和高光谱电光学系统的应用,这一点变得尤为重要。为了提高接近环境的BB校准器的IR光谱辐射的测量精度,NIST最近建立了专用功能,这是其新AIRI(高级红外辐射和成像)设备的一部分。可调滤波器比较器(TFC)是此设置中的关键新元素,使我们能够与两个已知温度和发射率的参考黑体对被测单元(UUT)进行精确比较。该报告描述了TFC比较器的主要设计特征,用于信号处理的算法以及TFC性能评估的结果。 TFC的发展使我们能够在3至5μm和8至12μm大气波段范围内以15至150 C的温度在15至150 C的温度下实现BB辐射温度比较,其标准光谱分辨率为2至3%。

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