Hybrid solar-electric cart efficiency enhancement: A bibliometric analysis

Author:

Purwanto Edi,Uddin Nur,Nugraha Hari

Abstract

The present study involves the development of an electric cart, with future research aiming to enhance its efficiency by creating a hybrid solar-electric cart. To achieve this goal, a bibliometric analysis of electric vehicle (EV) batteries is required. This study aims to identify research gaps in EV batteries through Bibliometric Analysis, utilizing Scopus Analyze and VOSViewer to analyze 1,276 documents obtained from the Scopus database, including articles (49.7%), conference papers (43.3%) and various other publications such as reviews, book chapters, reports, short surveys, notes, books, erratum, and editorials. The analysis reveals a substantial surge in EV battery research and publications within the Scopus database since 2013, and this trend is projected to continue until the end of 2023. Based on researchers’ affiliations, Chinese institutions have ranked first in contributions, followed by institutions from the United States, India, the United Kingdom, and Canada. Surprisingly, the University of Warwick secured the top among research institutions, with the Beijing Institute of Technology claiming the second position. The VOSViewer analysis generated six keyword clusters relevant to EV battery research. Of particular interest is Cluster 5, which emphasizes the significance of battery management techniques, establishing efficient battery swapping stations, optimizing energy management strategies, and exploring the role of EV batteries in building intelligent grids. These gaps identified in Cluster 5 will become the focal point for future research, especially concerning efficiency enhancement through developing a hybrid battery system capable of a hybrid solar-electric cart.

Publisher

EDP Sciences

Reference48 articles.

1. Dhuchakallaya I. and Saechan P., J. Energy Storage 72 (2023)

2. A Novel Solar Photovoltaic Integrated Modified SEPIC High Gain DC–DC Converter Using Evolutionary Algorithms for Electric Vehicle Battery Applications

3. Saravanakumar R., Devarajan N. M., Akshay S., Kannan S., Hemalatha N., and Parthiban P., in AIP Conf. Proc. (2023)

4. Firdouse Z., Ashraf S. M., Rahman K., and Rehman H., in 2023 Int. Conf. Power, Instrumentation, Energy Control. PIECON 2023 (2023)

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