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压力传感器:静态和动态校准的工作原理

Pressure Sensors: Working Principles of Static and Dynamic Calibration.

作者信息

Pereira José Dias

机构信息

ESTSetúbal, Instituto Politécnico de Setúbal, Rua do Vale de Chaves, Estefanilha, 2910-761 Setúbal, Portugal.

Instituto de Telecomunicações, 3810-193 Aveiro, Portugal.

出版信息

Sensors (Basel). 2024 Jan 19;24(2):629. doi: 10.3390/s24020629.

Abstract

This paper starts with an overview of the main principles used for pressure measurements, focusing on their usage in industrial applications' domains. Then, the importance of calibration procedures, namely, static and dynamic calibration of pressure sensors, is analyzed. Regarding calibration, it is important to note that there are several applications where the pressure signals to be measured can have large variations in short periods of time. In industrial applications, particularly in continuous production processes, generally, dynamic pressure measurements are less common; however, they are still required in several cases, such as control loops that are very sensitive to pressure variations, even if the frequencies of those variations are in the range of a few tens of hertz, or even lower. The last part of the paper presents the hardware and software of a flexible and low-cost static and dynamic pressure calibrator that also presents the capability to generate arbitrary waveform pressure signals for calibration and testing purposes. The proposed calibrator also includes the following advantages: remote pressure sensing capabilities that can be used to minimize calibration errors, such as those associated with capillary effects and pressure leakages; portability; and low cost. The paper ends with some experimental results obtained with the proposed calibrator.

摘要

本文首先概述了用于压力测量的主要原理,重点关注其在工业应用领域的使用情况。然后,分析了校准程序的重要性,即压力传感器的静态和动态校准。关于校准,需要注意的是,在一些应用中,待测量的压力信号可能在短时间内有很大变化。在工业应用中,特别是在连续生产过程中,通常动态压力测量不太常见;然而,在某些情况下仍然需要进行动态压力测量,例如对压力变化非常敏感的控制回路,即使这些变化的频率在几十赫兹甚至更低的范围内。本文的最后一部分介绍了一种灵活且低成本的静态和动态压力校准仪的硬件和软件,该校准仪还具备生成任意波形压力信号用于校准和测试的能力。所提出的校准仪还具有以下优点:可用于最小化校准误差的远程压力传感能力,例如与毛细管效应和压力泄漏相关的误差;便携性;以及低成本。本文最后给出了使用所提出的校准仪获得的一些实验结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07f/10818584/39f4b1d0c1ea/sensors-24-00629-g001.jpg

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