Comparison of radiation temperature measurement precision between middlewave and longwave thermal-imaging systems

Zhiyuan Sun, Wei Zhu
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引用次数: 3

Abstract

A comparison study on temperature measurement precision between middlewave 3-5μm and longwave 8-12μm measuring thermal imaging systems has been conducted. The study was limited to systems working in indoor conditions and the target's temperature is in the range of 270K~900K. First, the Disturb Resisting Function (DRF) of infrared systems is deduced. On the base of DRF curve, we find that the middlewave infrared system get the smaller influences under the same size disturb compared with the longwave system. A theory of the influence of target's physical characteristic and measurement conditions on the accuracy of temperature measurements has been developed. On the basis of the developed formulas an analysis of the influence of signal disturbances (because of incorrectly assumed emissivity, limited transmittance of the atmosphere, radiation reflected by the object and shift of optics radiation) on the accuracy of temperature measurement has been made. It has been found that the middlewave systems in typical temperature range offer generally better accuracy in temperature measurement than the longwave ones do.
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中波与长波热成像系统辐射测温精度的比较
对中波3-5μm和长波8-12μm热成像系统的测温精度进行了比较研究。该研究仅限于在室内条件下工作的系统,目标温度在270K~900K范围内。首先推导了红外系统的抗干扰函数(DRF)。在DRF曲线的基础上,我们发现在相同大小的干扰下,中波红外系统受到的影响比长波红外系统小。提出了一种物体物理特性和测量条件对温度测量精度影响的理论。在上述公式的基础上,分析了由于发射率假设不正确、大气透过率有限、物体反射的辐射和光学辐射的偏移等引起的信号干扰对测温精度的影响。研究发现,在典型温度范围内,中波系统的测温精度普遍优于长波系统。
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