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《Acta Photonica Sinica》 2008-01
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Optimization of a Passive Single-wavelength Real-time Temperature Measurement System

SHI De-heng1,2,SUN Jin-feng2,3,ZHU Zun-lue2,LIU Yu-fang2(1 Department of Physics & Electronic Engineering,Xinyang Normal University,Henan,Xinyang 464000,China)(2 College of Physics & Information Engineering,Henan Normal University,Henan,Xinxiang 453007,China)(3 Luoyang Normal University,Henan,Luoyang 471022,China)  
Based on the Kirchhoff law,using a reflection mirror,a practical real-time measurement system,which can measure radiance and temperature synchronously,is optimized.According to the relations between temperature measurement sensitivity,or relative temperature measurement sensitivity,or temperature resolving power,or standard deviation of temperature and working wavelength combined with atmospheric transmittance spectra indicating windows for infrared radiation,working wavelength of the instrument is achieved.In term of the effects on temperature measurement uncertainty by reflection irradiation combined with the minimal detectable power of the detector,the wavelength bandwidth of the instrument is determined.Experimental results show that temperature measurement uncertainty exceeds 0.3% at λ=0.80 μm and Δλ=20 nm over the temperature range from 600 to 2 500℃.
【Fund】: 国家自然科学基金(60577050 60777012);; 河南省高校创新人才支持计划(2008KJCX009)资助
【CateGory Index】: TP274
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