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Application of Monte Carlo Method for Evaluation of Uncertainties of ITS-90 by Standard Platinum Resistance Thermometer

机译:蒙特卡罗方法在标准铂电阻温度计评估ITS-90不确定度中的应用

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Evaluation of uncertainties of the temperature measurement by standard platinum resistance thermometer calibrated at the defining fixed points according to ITS-90 is a problem that can be solved in different ways. The paper presents a procedure based on the propagation of distributions using the Monte Carlo method. The procedure employs generation of pseudo-random numbers for the input variables of resistances at the defining fixed points, supposing the multivariate Gaussian distribution for input quantities. This allows taking into account the correlations among resistances at the defining fixed points. Assumption of Gaussian probability density function is acceptable, with respect to the several sources of uncertainties of resistances. In the case of uncorrelated resistances at the defining fixed points, the method is applicable to any probability density function. Validation of the law of propagation of uncertainty using the Monte Carlo method is presented on the example of specific data for 25 Ω standard platinum resistance thermometer in the temperature range from 0 to 660 °C. Using this example, we demonstrate suitability of the method by validation of its results.
机译:通过根据ITS-90在定义的固定点处校准的标准铂电阻温度计对温度测量的不确定性进行评估是一个可以以不同方式解决的问题。本文提出了一种基于分布的蒙特卡罗方法的程序。该过程在定义的固定点为电阻的输入变量使用伪随机数的生成,假定输入量的多元高斯分布。这允许考虑在定义的固定点处的电阻之间的相关性。就电阻不确定性的几种来源而言,假设高斯概率密度函数是可以接受的。在定义的固定点电阻不相关的情况下,该方法适用于任何概率密度函数。在0至660°C的温度范围内,使用25Ω标准铂电阻温度计的特定数据的示例显示了使用蒙特卡洛方法验证不确定度传播定律的信息。使用此示例,我们通过验证其结果来证明该方法的适用性。

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