4/2023 - 10 | View TOC | « Previous Article | Next Article » |
Extended Analysis of Non-Isolated Bidirectional High Gain ConverterANJANA, E. , RAMAPRABHA, R. |
Extra paper information in |
Click to see author's profile in SCOPUS, IEEE Xplore, Web of Science |
Download PDF (2,765 KB) | Citation | Downloads: 574 | Views: 774 |
Author keywords
DC-DC power converters, bidirectional, gain, stability analysis, Matlab
References keywords
bidirectional(17), converter(16), high(9), review(8), isolated(8), gain(8), converters(8), power(7), applications(7), voltage(6)
Blue keywords are present in both the references section and the paper title.
About this article
Date of Publication: 2023-11-30
Volume 23, Issue 4, Year 2023, On page(s): 89 - 98
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2023.04010
Web of Science Accession Number: 001152960800002
SCOPUS ID: 85182181771
Abstract
This paper focuses on developing a non-isolated bidirectional high gain converter suited for EV charging. This converter has two ports with bidirectional features which functions in both buck and boost operation. This converter is shown to attain high voltage gain with high efficiency while using less components. To verify the stability of the bidirectional high gain converter, state space averaging is performed and the stability curves are plotted for both boost and buck operation. The buck and boost characteristics of this converter are observed through simulation using MatLab, for 1.2 kW system and results are presented for the analysis. Based on this analysis the hardware of the bidirectional converter is developed and results are obtained and compared. |
References | | | Cited By «-- Click to see who has cited this paper |
[1] V. Seshagiri Rao, S. Kumaravel, "Ultra-voltage gain bidirectional DC-DC converter with reduced switch voltage stress and improved efficiency," IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 69, no. 11, pp. 4468-4472, 2022. [CrossRef] [Web of Science Times Cited 11] [SCOPUS Times Cited 22] [2] F. G. Nimitti, Julian C. Giacomini, Antonio M. S. S. Andrade, "Dual-stacked bidirectional boost/buck DC-DC converter," IEEE Transactions on Industrial Electronics, vol. 70, no. 9, pp. 8873-8882, 2023. [CrossRef] [Web of Science Times Cited 9] [SCOPUS Times Cited 14] [3] G. Lithesh, B. Krishna, V. Karthikeyan, "Review and comparative study of bi-directional DC-DC converters," in 2021 IEEE International Power and Renewable Energy Conference (IPRECON), 2021, pp. 1-6. [CrossRef] [Web of Science Times Cited 4] [SCOPUS Times Cited 12] [4] Salah Alatai, et al., "A review on state-of-the-art power converters: bidirectional, resonant, multilevel converters and their derivatives," Applied Sciences, vol. 11, 2021. [CrossRef] [Web of Science Times Cited 39] [SCOPUS Times Cited 50] [5] H. N. de Melo, J. P. F. Trovao, P. G. Pereirinha, H. M. Jorge, C. H. Antunes, "A controllable bidirectional battery charger for electric vehicles with vehicle-to-grid capability," IEEE Transactions on Vehicular Technology, vol.67, no.1, pp. 114-123, 2018. [CrossRef] [Web of Science Times Cited 73] [SCOPUS Times Cited 114] [6] A. K. Singh, A. K. Mishra, K. K. Gupta, Y. P. Siwakoti, "High voltage gain bidirectional DC-DC converters for supercapacitor assisted electric vehicles: A review," CPSS Transactions on Power Electronics and Applications, vol. 7, no. 4, pp. 386-398, 2022. [CrossRef] [SCOPUS Times Cited 22] [7] P. Aiswarya, Beena M Varghese, Ninu Joy, Anu George, "Switched inductor based bidirectional DC-DC converter for high voltage gain," Materials Today: Proceedings, vol. 58, no. 1, pp. 569-576, 2022. [CrossRef] [Web of Science Times Cited 5] [SCOPUS Times Cited 6] [8] Y. Li, Y. Wang, Y. Guan, D. Xu, "Design and optimization of high-gain bidirectional DC-DC converter for electric vehicles," IEEE Transactions on Power Electronics, vol. 38, no. 9, pp. 11221-11232, 2023. [CrossRef] [Web of Science Times Cited 3] [SCOPUS Times Cited 7] [9] A. K. Singh, A. K. Mishra, K. K. Gupta, Y. P. Siwakoti, "High voltage gain bidirectional DC-DC converters for supercapacitor assisted electric vehicles: A review," CPSS Transactions on Power Electronics and Applications, vol. 7, no. 4, pp. 386-398, 2022. [CrossRef] [SCOPUS Times Cited 22] [10] Bekkam Krishna, Gottapu Lithesh, V. Karthikeyan, "A novel high-gain bidirectional DC-DC converter for EV onboard charger applications," International Journal of Circuit Theory and Applications, vol. 50, 2022. [CrossRef] [Web of Science Times Cited 8] [SCOPUS Times Cited 9] [11] Sen-Tung Wu, Bo-Yu Yang, "Design and implementation of an isolated bidirectional phase-shift full-bridge converter with high transformation ratio," IEEE Access, vol. 11, pp. 17945-17955, 2023. [CrossRef] [Web of Science Times Cited 8] [SCOPUS Times Cited 9] [12] Ramesh Pushparajan, Pramod Gouda, A. Rameshbabu, G. Ramanathan, C. Bharatiraja, "An isolated multi-port bidirectional DC-DC converter for EV applications," Materials Today: Proceedings, vol. 68, 2022. [CrossRef] [SCOPUS Times Cited 6] [13] S. Inoue, M. Ishigaki, A. Takahashi, T. Sugiyama, "Design of an isolated bidirectional DC-DC converter with built-in filters for high power density," IEEE Transactions on Power Electronics, vol. 36, no. 1, pp. 739-750, 2021. [CrossRef] [Web of Science Times Cited 23] [SCOPUS Times Cited 25] [14] Yu-En Wu, "Novel high-step-up/step-down three-port bidirectional DC/DC converter for photovoltaic systems," Energies, vol. 15, p. 5257, 2022. [CrossRef] [Web of Science Times Cited 7] [SCOPUS Times Cited 9] [15] K. Tytelmaier, O. Husev, O. Veligorskyi, R. Yershov, "A review of non-isolated bidirectional dc-dc converters for energy storage systems," in 2016 II International Young Scientists Forum on Applied Physics and Engineering (YSF), 2016, pp. 22-28. [CrossRef] [SCOPUS Times Cited 134] [16] Farhan Mumtaz, et al., "Review on non-isolated DC-DC converters and their control techniques for renewable energy applications," Ain Shams Engineering Journal, vol. 12, no. 4, pp. 3747-3763, 2021. [CrossRef] [Web of Science Times Cited 94] [SCOPUS Times Cited 169] [17] M.C. Annamalai, N. Amutha Prabha, "A comprehensive review on isolated and non-isolated converter configuration and fast charging technology: For battery and plug in hybrid electric vehicle," Heliyon, vol. 9, no. 8, 2023. [CrossRef] [Web of Science Times Cited 9] [SCOPUS Times Cited 16] [18] N. A. Al-Obaidi, R. A. Abbas, H. F. Khazaal, "A review of non-isolated bidirectional DC-DC converters for hybrid energy storage system," in 2022 5th International Conference on Engineering Technology and its Applications (IICETA), 2022, pp. 248-253. [CrossRef] [SCOPUS Times Cited 16] [19] X. Wang, Z. Tan, L. Cai, G. Lei, N. Dai, "Bi-directional Cuk equalizer-based Li-Ion battery pack equalization control strategy research," World Electric Vehicle Journal, vol. 14, no. 86, 2023. [CrossRef] [Web of Science Times Cited 2] [SCOPUS Times Cited 3] [20] K. S. Nisha, Dattatraya N. Gaonkar, "Model predictive controlled three-level bidirectional converter with voltage balancing capability for setting up EV fast charging stations in bipolar DC microgrid," Electrical Engineering, vol. 104, no. 4, pp. 2653-2665, 2022. [CrossRef] [Web of Science Times Cited 9] [SCOPUS Times Cited 9] [21] Epyk Sunarno, et al., "Design and implementation bidirectional SEPIC/ZETA converter using fuzzy logic controller in DC microgrid application," Journal of Physics: Conference Series, vol. 1367, 2019. [CrossRef] [SCOPUS Times Cited 5] [22] R. Ramaprabha, Anjana Ethirajan, G. Balaji, N. Abhishek, R. Aswinkumar, "Investigation on the role of super capacitors in standalone PV system," in 2022 IEEE 2nd International Symposium on Sustainable Energy, Signal Processing and Cyber Security (iSSSC), 2022, pp. 1-5. [CrossRef] [SCOPUS Times Cited 1] [23] K. R. Shanmuga Vadivu, R. Ramaprabha, "Improved steady state and large signal transient response of three level AC-DC converter using hysteresis modulation-based SMC under DCM," Revue Roumaine des Sciences Techniques - Serie Electrotechnique et Energetique, vol. 66, no. 2, pp. 85-90, 2021. [24] S. Lakshmi, R. Ramaprabha, "Stability evaluation of four phase high gain converter by small signal modeling," Revue Roumaine des Sciences Techniques - Serie Electrotechnique et Energetique, vol. 65, pp. 75-80, 2020. [25] P. Rajan, S. Jeevananthan, "An adjustable gain three port converter for battery and grid integration in remote location microgrid systems," Renewable Energy, vol. 179, pp. 1404-1423, 2021. [CrossRef] [Web of Science Times Cited 4] [SCOPUS Times Cited 5] [26] A.-M. Silaghi, F. Berinde, C. Bleoju and A. De Sabata, "EMC simulation of conducted emissions produced by a DC-DC converter," 2020 IEEE 26th International Symposium for Design and Technology in Electronic Packaging (SIITME), pp. 440-443, 2020. [CrossRef] [SCOPUS Times Cited 6] Web of Science® Citations for all references: 308 TCR SCOPUS® Citations for all references: 691 TCR Web of Science® Average Citations per reference: 11 ACR SCOPUS® Average Citations per reference: 26 ACR TCR = Total Citations for References / ACR = Average Citations per Reference We introduced in 2010 - for the first time in scientific publishing, the term "References Weight", as a quantitative indication of the quality ... Read more Citations for references updated on 2024-11-16 14:29 in 163 seconds. Note1: Web of Science® is a registered trademark of Clarivate Analytics. Note2: SCOPUS® is a registered trademark of Elsevier B.V. Disclaimer: All queries to the respective databases were made by using the DOI record of every reference (where available). Due to technical problems beyond our control, the information is not always accurate. Please use the CrossRef link to visit the respective publisher site. |
Faculty of Electrical Engineering and Computer Science
Stefan cel Mare University of Suceava, Romania
All rights reserved: Advances in Electrical and Computer Engineering is a registered trademark of the Stefan cel Mare University of Suceava. No part of this publication may be reproduced, stored in a retrieval system, photocopied, recorded or archived, without the written permission from the Editor. When authors submit their papers for publication, they agree that the copyright for their article be transferred to the Faculty of Electrical Engineering and Computer Science, Stefan cel Mare University of Suceava, Romania, if and only if the articles are accepted for publication. The copyright covers the exclusive rights to reproduce and distribute the article, including reprints and translations.
Permission for other use: The copyright owner's consent does not extend to copying for general distribution, for promotion, for creating new works, or for resale. Specific written permission must be obtained from the Editor for such copying. Direct linking to files hosted on this website is strictly prohibited.
Disclaimer: Whilst every effort is made by the publishers and editorial board to see that no inaccurate or misleading data, opinions or statements appear in this journal, they wish to make it clear that all information and opinions formulated in the articles, as well as linguistic accuracy, are the sole responsibility of the author.