Volume 44 Issue 8
Sep.  2015
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Shi Dongping, Wu Chao, Li Zijun, Pan Wei. Analysis of the influence of infrared temperature measurement based on reflected temperature compensation and incidence temperature compensation[J]. Infrared and Laser Engineering, 2015, 44(8): 2321-2326.
Citation: Shi Dongping, Wu Chao, Li Zijun, Pan Wei. Analysis of the influence of infrared temperature measurement based on reflected temperature compensation and incidence temperature compensation[J]. Infrared and Laser Engineering, 2015, 44(8): 2321-2326.

Analysis of the influence of infrared temperature measurement based on reflected temperature compensation and incidence temperature compensation

  • Received Date: 2014-12-16
  • Rev Recd Date: 2015-01-18
  • Publish Date: 2015-08-25
  • Based on the basic theory of infrared radiation and principles of temperature measurement using infrared imager, two methods of temperature compensation were proposed, reflected temperature compensation and incidence temperature compensation, in order to ensure environmental temperature object has less of an effect on infrared measurement. The theoretical analysis proved its feasibility and the operation program was put forward and used in production. The compensation measurements were demonstrated in a laboratory experiment with four sulfide ore samples. The results show that the fitting of compensation measurement with true temperature is better than that of common infrared measurement. The fractional error of reflected compensation measurement significantly is less than the incidence. The theoretical analysis and experiment result indicate the feasibility of the proposed methods. The compensation measurements ensure the measurement accuracy as well as expand the scope of common thermal infrared imager application and ensure the numerical accuracy of infrared prediction in the spontaneous combustion of sulfide ores.
  • [1] ASTM E1862-1997. Standard practice for measuring and compensating for reflected temperature using infrared imaging radiometers [S]. 2014.
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    [3] Zhang Jian, Yang Li, Liu Huikai. Effect of environmental object on infrared temparature measurement[J]. Infrared Technology, 2005, 27(5): 419-422. (in Chinese)张健, 杨立, 刘慧开. 环境高温物体对红外热像仪测温误差的影响[J]. 红外技术, 2005, 27(5): 419-422.
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    [6] Yang Zhen, Yang Li. Calculation and error analysis of infrared temperature measurement using reflected temperature compensation[J]. Opticval Technique, 2008, 34(Sl): 154-159. (in Chinese)杨桢, 杨立. 反射温度补偿法对红外测温的补偿计算与误差分析[J]. 光学技术, 2008, 34(Sl): 154-159.
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    [8] Li Zijun, Shi Dongping, Wu Chao, et al. Infrared thermography for prediction of spontaneous combustion of sulfide ores [J]. Transactions of Nonferrous Metals Society of China, 2012, 22: 3095-3101.
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    [10] Yang Zhen, Zhang Shicheng, Yang Li. Reflected temperature compensation method and its experimental verification[J].Opticsa and Precision Engineering, 2010, 18(9): 1959-1964. (in Chinese)杨桢, 张士成, 杨立. 反射温度补偿法及其实验验证[J]. 光学 精密工程, 2010, 18(9): 1959-1964.
    [11] Tian Changhui, Yang Baiyu, Cai Ming, et al. Effect of atmospheric background on infrared target detection[J].Infrared and Laser Engineering, 2014, 43(2): 439-441. (in Chinese)田昌会,杨百愚,蔡明, 等.大气背景对红外目标探测的影响[J]. 红外与激光工程, 2014, 43(2): 439-441.
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    [13] Fan Jinxiang, Yang Jianyu. Development trends of infrared imaging detecting technology[J]. Infrared and Laser Engineering, 2012, 41(12): 3145-3152. (in Chinese)
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Analysis of the influence of infrared temperature measurement based on reflected temperature compensation and incidence temperature compensation

  • 1. School of Resources and Safety Engineering,Central South University,Changsha 410083,China

Abstract: Based on the basic theory of infrared radiation and principles of temperature measurement using infrared imager, two methods of temperature compensation were proposed, reflected temperature compensation and incidence temperature compensation, in order to ensure environmental temperature object has less of an effect on infrared measurement. The theoretical analysis proved its feasibility and the operation program was put forward and used in production. The compensation measurements were demonstrated in a laboratory experiment with four sulfide ore samples. The results show that the fitting of compensation measurement with true temperature is better than that of common infrared measurement. The fractional error of reflected compensation measurement significantly is less than the incidence. The theoretical analysis and experiment result indicate the feasibility of the proposed methods. The compensation measurements ensure the measurement accuracy as well as expand the scope of common thermal infrared imager application and ensure the numerical accuracy of infrared prediction in the spontaneous combustion of sulfide ores.

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