MODELLING AND SIMULATION OF ELECTROPNEUMATIC POSITIONING SYSTEM INCLUDING THE LENGTH OF PNEUMATIC LINES

Authors

  • Georgi Iliev Department Power Engineering Technical University of Gabrovo (BG)
  • Hristo Hristov Department Power Engineering, Technical University of Gabrovo (BG)

DOI:

https://doi.org/10.17770/etr2023vol3.7186

Keywords:

electropneumatic positioning system, mathematical model, pneumatic lines, simulation models

Abstract

This paper presents a mathematical model of electropneumatic positioning system including the length of pneumatic lines for the determination of flow and pressure in unsteady operating modes. A simulation model is developed to study the dynamic processes in an electropneumatic positioning system. Simulation of the mathematical models of the screw compressor, proportional directional valve, pneumatic lines, pneumatic cylinder and PID controller were designed in “MatLab Simulink”. The simulation models of the transients in the electropneumatic positioning system at different line lengths from 1m and 10m with stepwise variation of the input setpoint are simulated developed. Graphical comparison is made of the obtained experimental results and simulation model influence of the pneumatic line length on the dynamics of the electropneumatic positioning system are made.

Downloads

Download data is not yet available.

References

Andrey Andreev, Hristo Hristov, Georgi Iliev, Milena Racheva. Mathematical Model for a Pneumatic Force Actuator System. BGSIAM’15 PROCEEDINGS 10th Annual Meeting of the Bulgarian Section of SIAM. December 21-22, 2015 Sofia

Iliev, G., H. Hristov, A. Anchev. „Experimental investigation of static characteristics of pneumatic proportional directional valve. Vol. 3, pp. 318-323, UNITECH’ 15, Gabrovo, 2015.

Iliev,G., Hristo N. Hristov. "Mathematical model of electropneumatic positioning system including the length of pneumatic lines" Mechanics of Machines YEAR XXXI, №3,2023 pp(83-88);ISSN 0861-9727,Varna, Bulgaria.

Georgi Iliev.,Experimental study of dynamic processes in pneumatic lines Heat Engineering .year 8, book 1, 2017 (pp.8-12) Bulgaria

Noritsugu T. and M. Takaiwa “Robust positioning control of pneumatic servo system with pressure control loop”. IEEE International Conference on Robotics and Automation,. pp. 2613-2618. 1995.

Mihai, A., V. Constantin; “Research on the designing of pneumatic positioning units controlled with valves commanded in modulated pulses”; MATEC Web Conf.Volume 290, Number of page(s)12; [21 August 2019]

https://doi.org/10.1051/matecconf/201929008003

Lucian, Bogatu, Ciprian Rizescu; “Innovative Solutions for Pneumatic Positioning Systems”, Innovation, Engineering and Entrepreneurship pp 530–536 book series (LNEE,volume 505) [2018] https://doi.org/10.1007/978-3-319-91334-6_72

Elmadbouly E. E., Abdulsadek Nour M.: Modelling, simulation and sensitivity analysis of a straight pneumatic pipeline. Energy conversion and management 35.1 [1994], 61 - 77.

Karadzhov, T., Pulov, D., Angelov, N., Contactless measuring of temperature with differential photo receiver, ENVIRONMENT. TECHNOLOGY. RESOURCES, 12th International Scientific and Practical Conference. June 20-22, 2019, Rezekne Academy of Technologies, Rezekne, Latvia, pp 101-104

Saravanakumar D., B. Mohan, T. Muthuramalingam; “A review on recent research trends in servo pneumatic positioning systems precision engineering”Journal of the International Societies for Precision Engineering and Nanotechnology volume 49, July 2017, Pages 481-492

Richer Edmond; Yildirim Hurmuzlu, “A High Performance Pneumatic Force Actuator System: Part I—Nonlinear Mathematical Mode”; J. Dyn. Sys., Meas., Control. [September 2000], 122(3)416–425. doi: https://doi.org/10.1115/1.1286336AbstractV

Outbib R., E. Richard, “State feedback stabilization of an electropneumatic system” j. Dyn. Sys., Meas., Control. [September 2000], 122(3): 410–415. doi: https://doi.org/10.1115/1.1286625

Kotkas l., N Zhurkin, A Donskoy, Zharkovskij, “Design and Mathematical Modeling of a Pneumatic Artificial Muscle-Actuated System for Industrial Manipulators” Machines [2022, 10](10), 885; https://doi.org/10.3390/Machines10100885

Downloads

Published

2024-01-16

How to Cite

[1]
G. Iliev and H. Hristov, “MODELLING AND SIMULATION OF ELECTROPNEUMATIC POSITIONING SYSTEM INCLUDING THE LENGTH OF PNEUMATIC LINES”, ETR, vol. 3, pp. 106–111, Jan. 2024, doi: 10.17770/etr2023vol3.7186.