Scharf V, Naftali N, Eyal O, Lipson S G, Katzir A
Appl Opt. 2001 Jan 1;40(1):104-11. doi: 10.1364/ao.40.000104.
A theoretical simulation of a four-band fiber-optic radiometric technique is presented. This is a technique for remote, noncontact temperature measurement of a sample near room temperature, under conditions of unknown emissivity and ambient temperature. A realistic setup of a broadband IR detector, a set of three filters, an IR fiber, and a MATLAB software package for the calculations, is simulated in two steps: a calibration process and a measurement process. The results of the simulation show the limitations and advantages of the four-band radiometric technique and show the expected resolution of the sample temperature and emissivity and of the ambient temperature measurement. The theoretical resolution of the sample temperature measured by the four-band radiometric setup comes close to the resolution achieved in an equivalent single-band radiometric setup. The four-band method has an additional advantage of making it possible to calculate values of emissivity and ambient temperature.
本文介绍了一种四波段光纤辐射测量技术的理论模拟。这是一种在发射率和环境温度未知的条件下,对接近室温的样品进行远程非接触式温度测量的技术。对宽带红外探测器、一组三个滤光片、一根红外光纤以及用于计算的MATLAB软件包的实际设置分两步进行模拟:校准过程和测量过程。模拟结果展示了四波段辐射测量技术的局限性和优势,并显示了样品温度、发射率以及环境温度测量的预期分辨率。通过四波段辐射测量装置测量的样品温度的理论分辨率接近在等效单波段辐射测量装置中实现的分辨率。四波段方法的另一个优点是能够计算发射率和环境温度的值。