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TempMath - Mathematical modeling and simulation of resistive-based temperature measurement Data Acquisition Systems: Mathematical model based simulator for thermo-resistive based data acquisition systems

机译:Tempmath - 基于电阻的温度测量数据采集系统的数学建模与仿真:基于数学模型的基于数学模型基于热电阻数据采集系统的模拟器

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Most modern equipment, either industrial, home use or special purpose, deals with specific physical parameters measurement. Out of these, temperature is one of the most meaningful and commonly measured parameters. Whether developing a custom-built measurement system or just a signal conditioning circuit for off-the-shelf measurement systems, the accuracy of the measured values is of paramount importance. Both general purpose and specialized temperature measurement acquisition systems have a specified accuracy on component tolerances and parameter drift. Such systems are specified with an initial accuracy and they should remain within specifications during operation in their nominal conditions (temperature range, humidity, altitude). Despite efforts in the design stage, many errors are later generated by the temperature drift of the components. The current papers presents a non-statistical simulator solution based on mathematical models for thermo-resistive (NTC, RTD) based digital temperature measurement systems. While designing the mathematical models, we also debate the influence of specific parameters on the total measurement error.
机译:最现代化的设备,工业,家庭使用或特殊用途,涉及特定的物理参数测量。其中,温度是最有意义和最常测量的参数之一。无论是开发定制的测量系统还是仅用于现成的空调测量系统的信号调理电路,测量值的准确性都是至关重要的。通用和专用温度测量采集系统均对元件公差和参数漂移具有规定的准确性。这种系统以初始精度指定,并且在其标称条件(温度范围,湿度,高度)的操作期间应保持在规格内。尽管在设计阶段努力,但稍后会产生许多误差是由组件的温度漂移产生的。目前的论文基于基于热电阻(NTC,RTD)的数字温度测量系统的数学模型提供了非统计模拟器解决方案。在设计数学模型时,我们还讨论了特定参数对总测量误差的影响。

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