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Maximum respiratory pressure measuring system: calibration and evaluation of uncertainty

机译:最大呼吸压力测量系统:不确定度的校准和评估

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The objective of this paper is to present a methodology for the evaluation of uncertainties in the measurements results obtained during the calibration of a digital manovacuometer prototype (DM) with a load cell sensor pressure device incorporated. Calibration curves were obtained for both pressure sensors of the DM using linear regression by weighted least squares method (WLS). Two models were built to evaluate uncertainty. One takes into account the information listed in the sensor datasheet, resulting in the maximum permissible measurement error of the manovacuometer, and the other on the WLS implemented during calibration. Considering a range of ten calibration points, it was found that calibration procedure designed using WLS modeling indicates that the range of measurement uncertainty extends from 0.2 up to 0.5 kPa. This is inside the manufacter range that extends from 1.5 up 3.5 kPa, showing adequacy for use.
机译:本文的目的是提出一种方法,该方法用于评估在集成了测力计传感器压力装置的数字测压仪原型(DM)的校准过程中获得的测量结果中的不确定性。使用加权最小二乘法(WLS)进行线性回归,获得DM的两个压力传感器的校准曲线。建立了两个模型来评估不确定性。一种考虑了传感器数据表中列出的信息,从而导致了压力计的最大允许测量误差,另一种考虑了在校准期间实施的WLS。考虑到十个校准点的范围,发现使用WLS建模设计的校准程序表明测量不确定度范围从0.2到0.5 kPa。这是在1.5至3.5 kPa的制造商范围内,表明使用足够。

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