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Simulation and Design of PI-Controller for the Control of Buck Converter

Abhijeet Bhattacharya, Sandeep Banerjee, Saksham Girotra, Hridesh Shukla, Gaurang Bhardwaj, Sidharth Talia

Abstract


Abstract

In this paper, a proportional-integral (PI) controller is designed for the control of Buck converter to maintain its output as a constant for a varying input supply. To meet the power needs of a constant output, this study examines the DC / DC converter with primarily focusing on the design of PI controller for the control of Buck converter. This study was simulated using MATLAB/Simulink, and it was followed by experimental verification of the results on a physical setup.

Keywords: Closed loop control, buck converters, PI controller, feed forward gain, renewable energy

Cite this Article

Abhijeet Bhattacharya, Sandeep Banerjee, Saksham Girotra, Hridesh Shukla, Gaurang Bhardwaj, Sidharth Talia. Simulation and Design of PI-Controller for the Control of Buck Converter. Journal of Microelectronics and Solid State Devices. 2020; 7(1): 26–33p.



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References


M. Q. Duong, H. H. Nguyen, T. H. D. Nguyen, T. T. Nguyen, G. N. Sava, Design and Simulation of PI-Type Control for the Buck Boost Converter, in Proc. 2017 IEEE International Conference on Energy and Environment (CIEM). 01 December 2017. Bucharest, Romania

M. H. Rashid, Power Electronics: Circuits, Devices and Applications (3rd Edition), Prentice Hall, 2003.

N. Mohan, T. M. Undeland, W. P. Robbins, Power Electronics: Converters, Applications, and Design, 3rd Bk & Cdr edition, Wiley, 2002.

Prabhu Omer, Jagdish Kumar and Balwinder Singh Surjan, Design of Robust PID Controller for Buck Converter using Bat Algorithm, 1st IEEE International Conference on Power Electronics, Intelligent Control and Energy Systems (ICPEICES-2016). Delhi, India

Magdy Saoudi, Ahmed El-Sayed, Hamid Metwally, Design and Implementation of Closed-Loop Control System for Buck Converter Using Different Techniques, IEEE Aerospace and Electronic Systems Magazine (Volume: 32, Issue: 3, March 2017 ). 30–39p.

M. Q. Duong, H. H. Nguyen, T.H.D. Nguyen, T.T. Nguyen, G.N. Sava, Effect of component design on the DC/DC power converters dynamics, in Proc. 2017 IEEE 10th International Symposium on Advanced Topics in Electrical Engineering Conf., pp. 1–5. 23–25 March 2017. Bucharest, Romania.

Eker, I., and Torun, Y. Fuzzy logic control to be conventional method. Energy Conversion and Management, Vol. 47, 4, (2006), 377–394p.

Guesmi, K., Essounbouli, N., and Hamzaoui, A. Systematic design approach of fuzzy PID stabilizer for DC–DC converters. Energy Conversion and Management, Vol. 49, Issue 10 (2008), 2880–2889p.

R. Kurokawa, S. Takao, R. Vilanova and Y. Konishi, Closed-loop Data-driven Trade-off PID Control Design, IFAC-Papers On Line, vol.51, no. 4, pp.244–249, 2018




DOI: https://doi.org/10.37591/jomsd.v7i1.3979

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