Copyright © 2026 Authors retain the copyright of this article. This article is an open access article distributed under the Creative Commons Attribution License which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
@article{204180,
author = {Yash Dangare and Sopan Patil and Tushar Shinde and Dr. Manjusha Patil},
title = {Design of Hybrid Battery Supercapacitor System for Dynamic Load},
journal = {International Journal of Innovative Research in Technology},
year = {2026},
volume = {13},
number = {1},
pages = {2462-2467},
issn = {2349-6002},
url = {https://ijirt.org/article?manuscript=204180},
abstract = {The Hybrid Energy Storage Systems consist of supercapacitors and batteries, which make up energy storage systems that operate with higher efficiency in the case of quickly changing loads. Because of their slower response time, batteries frequently encounter more stress due to sudden changes in loads. In this study, a new Hybrid Energy Storage System has been proposed, which has a structure based on the combination of supercapacitors for transient loads and batteries for steady state powers. The suggested Hybrid Energy Storage System has been modeled and tested in MATLAB Simulink. The simulation results have shown that the suggested Hybrid Energy Storage System has higher voltage stability on the DC bus than the Battery Energy Storage Systems. Moreover, the Hybrid Energy Storage System has been shown to have higher current sharing and lesser stress on the batteries than the Battery Energy Storage Systems.},
keywords = {Hybrid Energy Storage System, Supercapacitor, Battery, Dynamic Load, DC Bus Voltage, Power Management.},
month = {June},
}
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