Active Cell Equalization Scheme for Performance Enhancing a Li-ion Capacitor Energy Management System

M. Koseoglou, E. Tsioumas, N. Jabbour, D. Papagiannis, C. Mademlis, R. Guarino, S. Guarino, Fabio Tedone
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Abstract

This paper proposes an improved lithium-ion capacitor (LIC) management system (LICMS), that can provide active LIC’s cells equalization and thus, enhance the performance of the energy storage system. The central idea of the suggested method is based on the control of the LIC cells’ current of each stack, by utilizing an advanced cell equalization topology in order to adjust the cell balancing current. An easy to apply cell equalization algorithm is proposed so as the LIC cells can be effectively equalized during the charging procedure. The state of health (SoH) of the LIC cells are also monitored by a SoH diagnostic algorithm, which can provide the accurate estimation of their internal resistance and the energy capacity. The accuracy and the practicality of the proposed technology along with the cell equalization and SoH diagnostic algorithms have been experimentally validated on a LICMS of three series connected cells.
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提高锂离子电容器能量管理系统性能的有源电池均衡方案
本文提出了一种改进的锂离子电容器管理系统(LICMS),该系统可以提供有源锂离子电容器的电池均衡,从而提高储能系统的性能。该方法的核心思想是通过利用先进的单元均衡拓扑来调整单元平衡电流,从而控制每个堆叠的LIC单元电流。为了在充电过程中对LIC电池进行有效的均衡,提出了一种易于应用的电池均衡算法。采用健康状态诊断算法监测LIC电池的健康状态(SoH),可以准确估计其内阻和能量容量。所提出的技术以及细胞均衡和SoH诊断算法的准确性和实用性已经在三个串联连接细胞的LICMS上进行了实验验证。
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