Stability Assessment of Power Supply Systems Employing Supercapacitors
DOI:
https://doi.org/10.26821/IJSHRE.12.10.2024.121105Keywords:
Electric Vehicle, Stability, SupercapacitorAbstract
With the increasing popularity of electric vehicles, there is an urgent need for a reliable and stable power supply for charging batteries. Charging multiple electric vehicles simultaneously often leads to a noticeable reduction in voltage levels and current supply. To address this challenge, the integration of supercapacitors is proposed. Supercapacitors, renowned for their high-power density and swift charge-discharge capabilities, offer a potential solution. This study aims to compare power supply systems, examining their stability in delivering consistent power with and without the integration of supercapacitors. The research endeavors to contribute to the development of stable and reliable power supplies, specifically designed for charging multiple vehicles simultaneously.
References
Karthikeyan, S., B. Narenthiran, A. Sivanantham, Laxmi Deepak Bhatlu, and T. Maridurai. "Supercapacitor: Evolution and review." Materials Today: Proceedings 46 (2021): 3984-3988.
Jeong, Jin-uk, Hyeoun-dong Lee, C. S. Kim, Hang-Seok Choi, and Bo-Hyung Cho. "A development of an energy storage system for hybrid electric vehicles using supercapacitor." In The 19th International Battery, Hybrid and Fuel Cell Electric Vehicle Symposium & Exhibition, pp. 1379-1389. 2002.
Satpathy, Sambit, Sanchali Das, and Bidyut Kumar Bhattacharyya. "How and where to use supercapacitors effectively, an integration of review of past and new characterization works on super-capacitors." Journal of Energy Storage 27 (2020): 101044.
Rufer, A., Hotellier, D., & Barrade, P. (2004). “A supercapacitor-based energy storage substation for voltage compensation in weak transportation networks”. IEEE Transactions on power delivery, 19(2), 629-636.
Reynolds, Chris, and AVX Application Engineer. "Evolution of supercapacitors." AVX Application Engineer (2009).
Navarro, Gustavo, Jorge Torres, Marcos Blanco, Jorge Nájera, Miguel Santos-Herran, and Marcos Lafoz. "Present and future of supercapacitor technology applied to powertrains, renewable generation and grid connection applications." Energies 14, no. 11 (2021): 3060
Libich, Jiří, Josef Máca, Jiří Vondrák, Ondřej Čech, and Marie Sedlaříková. "Supercapacitors: Properties and applications." Journal of energy storage 17 (2018): 224-227.
“Experimental study of energy management of FC/SC hybrid system using the Passivity Based Control”
Song, Ziyou, Jianqiu Li, Jun Hou, Heath Hofmann, Minggao Ouyang, and Jiuyu Du. "The battery-supercapacitor hybrid energy storage system in electric vehicle applications: A case study." Energy 154 (2018): 433-441.
Supercapacitor Assisted Low Dropout Regulators (SCALDO) for High efficiency DC-DC Converters for DC Microgrid Applications
“Supercapacitor-Assisted Techniques and Supercapacitor-Assisted Loss Management Concept: New Design Approaches to Change the Roadmap of Power Conversion Systems”