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Dynamic Compensation of Pt100 Temperature Sensor in Petroleum Products Testing Based on a Third Order Model

机译:基于三阶模型的Pt100温度传感器在石油产品测试中的动态补偿

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In this paper, taking example for closed cup flash point testing, a 3rd order model is presented to describe the dynamic characteristic of sheathed Pt100 sensor for the first time, to solve the problem that there are dynamic characteristic discriminations between the Pt100 temperature sensor and the mercury thermometer, which bring errors to measuring. The mathematical models of sheathed Pt100 sensor and mercury thermometer are analyzed, and their transfer functions are evaluated, via step response experiments, assisted with calculation and simulation using MATLAB software. A compensation algorithm based on transfer functions is presented. Experimental results show that the algorithm can get better compensation effect than the traditional method which compensate with a selected static temperature curve, and also can be used in temperature measurement systems in which dynamic characteristic of sensors are definitely required.
机译:本文以封闭杯闪点测试为例,首次提出了一种三阶模型来描述带护套的Pt100传感器的动态特性,以解决Pt100温度传感器与Pt100温度传感器之间存在动态特性差异的问题。水银温度计,这会带来测量误差。分析了带护套的Pt100传感器和水银温度计的数学模型,并通过阶跃响应实验评估了它们的传递函数,并借助MATLAB软件进行了计算和仿真。提出了一种基于传递函数的补偿算法。实验结果表明,该算法与传统的静态温度曲线补偿方法相比,具有更好的补偿效果,也可用于需要动态特性的温度测量系统中。

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