ASSESSMENT OF THE OPERATION OF THE PUMP CONTROL SYSTEM USING THE PID CONTROLLER

Authors

  • Łukasz Betliński Gdynia Maritime University, 81-87 Morska St., 81-225 Gdynia, Poland, Faculty of Marine Electrical Engineering
  • Mostefa Mohamed-Seghir Gdynia Maritime University, 81-87 Morska St., 81-225 Gdynia, Poland, Faculty of Marine Electrical Engineering https://orcid.org/0000-0003-2814-1756

DOI:

https://doi.org/10.26408/129.02

Keywords:

control system, flowmeter, PID controller, pump control, Arduino platform

Abstract

The purpose of this project was to design and construct an experimental setup enabling pump operation to be controlled and ensuring the smooth regulation of its efficiency. The closed liquid circuit is equipped with a throttling valve to slow down the flow. In addition, flow meters were used in the installation to enable the flow to be measured. Ultimately, after choking the flow, the pump could be controlled in such a way that maintained the set flow value. The PID controller fulfilling this function can be configured by changing its settings.
In this way, an expiermintal setup can demonstrate the influence of individual elements of the regulator on the efficiency of regulation. This work is a continuation of further research related to the project number: 006/RID/2018/19 financed under the program Ministry of Science and Higher Education.

References

Abramowicz-Gerigk, T., Burciu, Z., Jachowski, J., Kreft, O., Majewski, D., Stachurska, B., Sulisz, W., Szmytkiewicz, P., 2021, Experimental Method for the Measurements and Numerical Investigations of Force Generated on the Rotating Cylinder under Water Flow, Sensors, vol. 21.

Alrheeh, M., Zhengfeng, J., 2006, Automatic Control of Water Pumping Stations, 1st International Symposium on Digital Manufacture, vol. 1–¬3, Wuhan Univ Technology Press, Wuhan, China, pp. 147–149.

Choi, S., Boston, J.R., Antaki, J.F., 2005, An Investigation of the Pump Operating Characteristics as

a Novel Control Index for LVAD Control, Int. J. Control Autom. Syst., vol. 3, pp. 100–108.

Dębowski, A., Automatyka. Napęd elektryczny, Wydawnictwo Naukowe PWN, Warszawa 2017.

Gevorkov, L., Rassolkin, A., Kallaste, A., Vaimann, T., 2018, Simulink Based Model for Flow Control of a Centrifugal Pumping System, 25th International Workshop on Electric Drives: Optimization in Control of Electric Drives, Ieee, New York, USA.

Jędral, W., 2014, Pompy wirowe, Oficyna Wydawnicza Politechniki Warszawskiej, Warszawa.

Nejad, H.D., Nazari, M., Nazari, M., Mardan, M.M.S., Mohammadzadeh, A., Vu, M.T., Mosavi, A., 2022, Fuzzy State-Dependent Riccati Equation (FSDRE) Control of the Reverse Osmosis Desalination System With Photovoltaic Power Supply, Ieee Access, vol. 10, pp. 95 585–95 603.

Oca de, E.Y.-M., Maya-Rodriguez, M.C., Tolentino-Eslava, R., Lozano-Hernandez, Y., 2022, A Real-Time Stable Neuro-Controller to Reduce the Energy Consumption in a Centrifugal Pump Under Disturbances, Rev. Iberoam. Autom. E Inform. Ind., vol. 19, pp. 265–273.

Su, X., Xie, Y., Sun, L., Jiang, B., 2022, Constant Force Control of Centrifugal Pump Housing Robot Grinding Based on Pneumatic Servo System, Appl. Sci.-Basel, vol. 12.

Yu, J., Zhang, T., Qian, J., 2011, Efficiency Testing Methods for Centrifugal Pumps, [in:] Electrical Motor Products: International Energy-Efficiency Standards and Testing Methods, Woodhead Publ. Ltd, Cambridge, pp. 125–130.

Zhou, Y., 2022, A Summary of PID Control Algorithms Based on AI-Enabled Embedded Systems, Secur. Commun. Netw.

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Published

2024-03-28

How to Cite

Betliński, Łukasz, & Mohamed-Seghir, M. (2024). ASSESSMENT OF THE OPERATION OF THE PUMP CONTROL SYSTEM USING THE PID CONTROLLER . Scientific Journal of Gdynia Maritime University, 129, 22–32. https://doi.org/10.26408/129.02