A new topology and control strategy for a hybrid battery-ultracapacitor energy storage system

  • Changle Xiang
  • , Yanzi Wang*
  • , Sideng Hu
  • , Weida Wang
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

98 Citations (Scopus)

Abstract

This study investigates a new hybrid energy storage system (HESS), which consists of a battery bank and an ultra-capacitor (UC) bank, and a control strategy for this system. The proposed topology uses a bi-directional DC-DC converter with a lower power rating than those used in the traditional HESS topology. The proposed HESS has four operating modes, and the proposed control strategy chooses the appropriate operating mode and regulates the distribution of power between the battery bank and the UC bank. Additionally, the control system prevents surges during mode switching and ensures that both the battery bank and the bi-directional DC-DC converter operate within their power limits. The proposed HESS is used to improve the performance of an existing power-split hybrid electric vehicle (HEV). A method for calculating the parameters of the proposed HESS is presented. A simulation model of the proposed HESS and control strategy was developed, and a scaled-down experimental platform was constructed. The results of the simulations and the experiments provide strong evidence for the feasibility of the proposed topology and the control strategy. The performance of the HESS is not influenced by the power limits of the bi-directional DC-DC converter.

Original languageEnglish
Pages (from-to)2874-2896
Number of pages23
JournalEnergies
Volume7
Issue number5
DOIs
Publication statusPublished - May 2014

Keywords

  • Battery
  • Control
  • Hybrid energy storage system (HESS)
  • Parameter
  • Ultracapacitor (UC)

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