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Inverse analysis of non-uniform temperature distributions using multispectral pyrometry

机译:使用多光谱高温计反演非均匀温度分布

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Optical diagnostics can be used to obtain sub-pixel temperature information in remote sensing. A multispectral pyrometry method was developed using multiple spectral radiation intensities to deduce the temperature area distribution in the measurement region. The "method transforms a spot multispectral pyrometer with a fixed field of view into a pyrometer with enhanced spatial resolution that can give sub-pixel temperature information from a "one pixel" measurement region. A temperature area fraction function was defined to represent the spatial temperature distribution in the measurement region. The method is illustrated by simulations of a multispectral pyrometer with a spectral range of 8.0-13.0 tm measuring a non-isothermal region with a temperature range of 500-800 K in the spot pyrometer field of view. The inverse algorithm for the sub-pixel temperature distribution (temperature area fractions) in the "one pixel" verifies this multispectral pyrometry method. The results show that an improved Levenberg-Marquardt algorithm is effective for this ill-posed inverse problem with relative errors in the temperature area fractions of (-3%, 3%) for most of the temperatures. The analysis provides a valuable reference for the use of spot multispectral pyrometers for sub-pixel temperature distributions in remote sensing measurements. (C) 2016 Elsevier B.V. All rights reserved.
机译:光学诊断可用于获取遥感中的子像素温度信息。开发了一种使用多光谱辐射强度的多光谱高温测定法,以推断测量区域中的温度区域分布。 “方法将具有固定视场的点多光谱高温计转换为具有增强的空间分辨率的高温计,该高温计可以提供来自“一个像素”测量区域的子像素温度信息。定义了温度区域分数函数来表示空间温度通过在点高温计视野中测量光谱范围为8.0-13.0 tm的多光谱高温计的模拟来说明该方法,该光谱仪测量了温度范围为500-800 K的非等温区域。 “一个像素”中子像素温度分布(温度面积分数)的算法验证了这种多光谱高温测定法的结果,结果表明,改进的Levenberg-Marquardt算法对于温度相对误差的不适定逆问题有效在大多数温度下,面积分数为(-3%,3%),该分析为斑点多点分析的使用提供了有价值的参考ctral高温计用于遥感测量中的亚像素温度分布。 (C)2016 Elsevier B.V.保留所有权利。

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