Design of dual loop controller for boost converter based on PI controller

Author:

Ullah Kifayat1,Ishaq Muhammad1ORCID,Naz Muhammad Ajmal2,Rahaman Mostafizur3,Soomar Arsalan Muhammad4ORCID,Ahmad Hijaz567ORCID,Alam Md. Nur8ORCID

Affiliation:

1. Department of Engineering, University of Campania “Luigi Vanvitelli” 1 , Aversa 81031, Italy

2. Department of Electronics and Telecommunications (DET) 2 , Politecnico di Torino, Turin, Italy

3. Department of Chemistry, College of Science, King Saud University 3 , P.O. Box 2455, Riyadh 11451, Saudi Arabia

4. Faculty of Electrical and Control Engineering, Gdansk University of Technology 4 , 80-233 Gdansk, Poland

5. Operational Research Center in Healthcare, Near East University 5 , Near East Boulevard, PC: 99138 Nicosia/Mersin 10, Türkiye

6. Department of Computer Science and Mathematics, Lebanese American University 6 , Beirut, Lebanon

7. 7 Department of Mathematics and Informatics, Azerbaijan University, Jeyhun Hajibeyli street, 71, AZ1007, Baku Azerbaijan

8. 8 Department of Mathematics, Pabna University of Science and Technology, Pabna 6600, Bangladesh

Abstract

Boost converters are widely used in industry for many applications, such as electrical vehicles, wind energy systems, and photovoltaic energy systems, to step up the low voltages. Using the topology structure of the DC–DC boost circuit, this paper studied and designed a dual loop control method based on proportional integral controllers for improving the converter efficiency. The inner loop and outer loop controls of the traditional boost circuit are adopted in MATLAB/Simulink software to make the output of the system more stable. The input voltage is set to 24 V DC, and the desired output voltage varies from 36 to 48 V. Through simulation verification, the influence of a 1 kW sudden load connection by using a switch at a nominal output voltage of 48 V DC is studied, and the results show that it reduces the transient output voltage dips during the sudden load connection. Simulation analysis verifies the design scheme of the system, reduces the fluctuation in output voltage and power, reduces the output current ripple, minimizes the dip in voltage to a minimum possible value, and improves the dynamic characteristics and overall efficiency of the converter.

Funder

King Saud University

Publisher

AIP Publishing

Reference31 articles.

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2. A closed loop control of quadratic boost converter using PID-controller;Int. J. Eng.,2014

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4. A DSP based controller design for noninverting buck-boost converter;Int. J. Latest Trends Eng. Technol.,2016

5. Analysis and control of a new dual-input impedance-based DC–DC converter for hybrid PV-FC systems;Adv. Electr. Comput. Eng.,2019

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