Embedded Control Electrostatic Double Layer Capacitor-Battery Hybrid Energy Storage System

Citation

Lee, Noah and Nee, Chen Hon and Yap, Seong Shan and Ong, Guang Liang and Tham, Kwong Keong (2026) Embedded Control Electrostatic Double Layer Capacitor-Battery Hybrid Energy Storage System. Computational Intelligence in Modern Engineering Systems, 1897. pp. 255-261. ISSN 2367-3370

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Abstract

The increasing demand for high-performance and sustainable energy storage solutions has motivated the integration of electrostatic double layer capacitors (EDLC) lithium-based batteries and lead acid batteries through advanced embedded control systems. This study presents a full active topology for hybrid energy storage, designed to synergize the fast charge–discharge dynamics of EDLCs with the high energy density of lithium batteries. The embedded control strategy enables adaptive power flow management, ensuring optimal charge distribution, load balancing, and extended lifetime of the lithium battery by mitigating peak current stresses. The embedded control hybrid energy storage system is tested to acquire the voltage, current data and perform the necessary energy redirection for energy outflow from storage system, functioned in full active topology when subject to constant load.

Item Type: Article
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK7800-8360 Electronics > TK7871 Electronics--Materials
Divisions: Faculty of Artificial Intelligence & Engineering (FAIE)
Depositing User: Ms Suzilawati Abu Samah
Date Deposited: 04 Aug 2026 07:23
Last Modified: 04 Aug 2026 07:23
URII: http://shdl.mmu.edu.my/id/eprint/16505

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