Experimental Investigation of Microcontroller-Based Acoustic Temperature Transducer Systems
Author:
Al-Rawashdeh Ayman Y., Younes Tariq M.ORCID, Dalabeeh Ali, Al_Issa HuthaifaORCID, Qawaqzeh MohamedORCID, Miroshnyk OleksandrORCID, Kondratiev AndriiORCID, Kučera PavelORCID, Píštěk VáclavORCID, Stepenko SerhiiORCID
Abstract
Temperature transducers are commonly used to monitor process parameters that are controlled by various types of industrial controllers. The purpose of this study is to design and model a simple microcontroller-based acoustic temperature transducer based on the variations of resonance conditions in a cylindrical resonance tube. The transducer’s operation is based on the generation of an acoustic standing wave in the free resonance mode of generation within a cylindrical resonance tube which is converted into a train of pulses using Schmitt trigger circuit. The frequency of the generated standing wave (i.e., the train of pulses) is measured by the Arduino Uno microcontroller, where a digital pin is used to acquire pulses that are counted using a build-in software function in an Arduino IDE environment. Experimental results are performed for three sizes of diameters to investigate the effect of the diameter of resonance tube on the obtained results. The maximum nonlinearity error according to Full-Scale Deflection (FSD) is about 2.3 percent, and the relative error of the transducer is evaluated using experimental findings and the regression model. The circuit simplicity and design of the suggested transducer, as well as the linearity of its measurements, are notable.
Funder
BUT Ministry of Education and Science of Ukraine
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference31 articles.
1. Essential Measurement;Graham;Meas. Control,2013 2. Kondratiev, A., Píštěk, V., Smovziuk, L., Shevtsova, M., Fomina, A., Kučera, P., and Prokop, A. (2021). Effects of the Temperature–Time Regime of Curing of Composite Patch on Repair Process Efficiency. Polymers, 13. 3. Dayana, G., Sharma, J., Mims, D., Barnes, D., and Behrens, R. (2018, January 24). Temperature Logging Guidelines and Factors that Affect Measurement Accuracy. Proceedings of the SPE Annual Technical Conference and Exhibition, Dallas, TX, USA. 4. Determining the parameters for a 3D-printing process using the fused deposition modeling in order to manufacture an article with the required structural parameters;Vambol;East.-Eur. J. Enterp. Technol.,2021 5. Improving Temperature-Logging Accuracy in Steamfloods;Carpenter;J. Pet. Technol.,2019
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|