NJERUNICROSS Journal Logo
Nigerian Journal of
Engineering Research
Faculty Of Engineering UNICROSS

Open Access Journal

P-ISSN: 2971-785X
E-ISSN: 3141-4095

  • HOME
  • ABOUT
    • Editorial Board
    • Editorial Policy
    • Journal Statistics
    • Open Access and Copyrights
    • Ethical Guidelines for Journal Publication
  • GUIDELINES

    For Authors

    • General info for authors
    • Editorial process
    • Submitting a manuscript
    • Manuscript organization
    • Tables and figures guidelines
    • Guidelines for writing references
    • Authorship declaration and conflict of interest
    • Article Processing Charge (APC)

    For Reviewers

    • General info for reviewers
    • Reviewing process
    • Reviewing form
    • Conflict of interest
    • Publication policy and ethical considerations
  • ARCHIVE
  • CONTACT
  • ICEST

Login / Register

P-ISSN: 2971-785X
E-ISSN: 3141-4095

Back to previous page

Volume 1, Issue 1

Research Article

Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System

Published: December 14, 2023 | Volume: 1 | Issue: 1

Download Article Cite
View Count: 26 Page No: 115-123

Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System

Okon E. Ekpenyong1 corresponding author email *, Eko J. Akpama2 , Emmanuel E. Effiong3

Published: December 14, 2023 | Issue: Volume 1, Issue 1

Page No. 115–123

Read More

Corresponding Author: Okon E. Ekpenyong

Email: okonekpenyong@gmail.com

1 University of Cross River State, Cross River State

2 University of Cross River State, Cross River State

3 University of Cross River State, Cross River State

Received: November 20, 2023 Reviewed: November 29, 2023 Accepted: December 14, 2023

Abstract

In order to reduce carbon emission from the usage of internal combustion engine vehicles, researchers and Engineers has put efforts in recent time in electric vehicle technologies. This paper presents modelling and control of electric vehicle drive system using a bi-directional DC-DC converter. The drive system is comprised of Lithium-ion batteries, bi-directional half bridge Buck boost DC-DC converter, Fuzzy logic controller and DC machine. The provision for energy regeneration is achieved by using half bridge non isolated DC-DC converter. The initial State of Charge (SOC) is set at 85% where the discharge current is 19.5A during motor mode. The nominal voltage of battery stack is set at 380V with maximum capacity of 100Ah. The rated power of DC machine is set to 250HP with 500V armature voltage and 300V field voltage. The operating mode of power converter is determined according to the torque values of DC machine which is operated in motor and generator modes. The bi-directional DC-DC converter is controlled with Fuzzy logic controller in both modes. Fuzzy logic controller has been implemented for charge control. The system model has been simulated in the MATLAB/SIMULINK. The various waveforms corresponding to the motor speed, armature current, SOC, battery voltage and the battery current during simulation has been plotted and evaluated. From Simulation result verification, its shows that the proposed converter with Fuzzy logic controller is effective and efficient in charging system for Electric Vehicle.

Keywords: Bi-directional DC-DC converter, DC machine, Fuzzy logic controller (FLC), PWM

Article Statistics

Total article views
How many readers opened this article page
26
Total article downloads
Times the PDF file was downloaded
0

Share

Cite

APA
Okon E. Ekpenyong et al. (2023). Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System. Nigerian Journal of Engineering Research, 1(1), 115-123. https://izlik.org/JA28WS58XL
AMA
Okon E. Ekpenyong et al. Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System. Nigerian Journal of Engineering Research. 2023;1(1):115-123. https://izlik.org/JA28WS58XL
Chicago
Okon E. Ekpenyong et al. 2023. \"Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System\". Nigerian Journal of Engineering Research 1 (1): 115-123. https://izlik.org/JA28WS58XL.
IEEE
[1] Okon E. Ekpenyong et al., \"Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System\", Nigerian Journal of Engineering Research, vol. 1, no. 1, pp. 115-123, Dec 2023. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Okon E. Ekpenyong et al. \"Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System\". Nigerian Journal of Engineering Research, vol. 1, no. 1, Dec 2023, pp. 115-123, https://izlik.org/JA28WS58XL.
Vancouver
1. Okon E. Ekpenyong et al. Modeling and Control of DC-DC Bidirectional Converter for Electric Vehicle (EV) Drive System. Nigerian Journal of Engineering Research [Internet]. 2023 Dec. 14;1(1):115-123. Available from: https://izlik.org/JA28WS58XL

INDEXED BY

Crossref — Journal Indexing Database DOI — Journal Indexing Database Index Copernicus International — Journal Indexing Database EZB Electronic Journals Library — Journal Indexing Database EuroPub — Journal Indexing Database Research Organization Registry — Journal Indexing Database Wikidata — Journal Indexing Database Research Bible — Journal Indexing Database ISSN — Journal Indexing Database Google Scholar — Journal Indexing Database

NJERUNICROSS JOURNAL

Sponsored by:

TETFund Logo — Sponsor of NJERUNICROSS Journal

Quick Links

  • Home
  • About
  • Guidelines
  • Contact

Contact Us

Faculty of Engineering, University of Cross River State

icest@unicross.edu.ng njeru_@unicross.edu.ng

License

Creative Commons Attribution 4.0 International License
This work is licensed under a Creative Commons Attribution 4.0 International License.

Articles published in the journal are published under a Creative Commons 4.0 International License. For the sections taken from the articles, it is obligatory to cite in accordance with the citation rules.

© 2026 Nigerian Journal of Engineering Research. All rights reserved.

Start typing to search available articles...