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REFLECTION ERRORS FOR LOW-TEMPERATURE RADIATION THERMOMETERS

机译:低温辐射温度计的反射误差

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For low-temperature applications of radiation thermometry the target's surroundings are often at a comparable temperature to that of the target itself. Thus, when the target is not a blackbody, the potential for large reflection errors is high. This paper discusses two complementary methods that can be used to overcome this reflection error. The first relies on the observation that, regardless of the target's emissivity, the target together with its surroundings are a good approximation to a blackbody. Thus measurements are made with no emissivity compensation. The second method utilises the fact that in low-temperature radiation thermometers the radiance of the detector itself causes an offset. Thermometer manufacturers recognise that in some situations, with the appropriate sequence of emissivity compensation and offset correction, the detector offset can be used to correct for the reflection error due to the surroundings. As a consequence many radiation thermometers are designed to operate in this manner. However, there are distinct regimes where one particular reflection compensation method is more effective than the other. This paper analyses the two methods, gives guidelines on when to use one method over the other, and determines the resulting residual errors
机译:对于辐射测温法的低温应用,目标周围的温度通常与目标本身的温度相当。因此,当目标不是黑体时,发生较大反射误差的可能性就很高。本文讨论了可用于克服此反射误差的两种互补方法。第一个依据是这样的观察结果:无论目标的发射率如何,目标及其周围环境都非常适合黑体。因此,在没有发射率补偿的情况下进行测量。第二种方法利用了以下事实:在低温辐射温度计中,检测器本身的辐射会导致偏移。温度计制造商认识到,在某些情况下,通过适当的发射率补偿和偏移校正顺序,可以使用检测器偏移来校正由于周围环境引起的反射误差。结果,许多辐射温度计被设计成以这种方式工作。然而,在不同的制度下,一种特定的反射补偿方法比另一种更有效。本文分析了这两种方法,为何时使用一种方法提供了指导,并确定了产生的残留误差

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    《TEMPMEKO 2001》|2002年|p.149-154|共6页
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    Peter Saunders;

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