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Energy Management and Power Distribution for Battery/Ultracapacitor Hybrid Energy Storage System in Electric Vehicles with Regenerative Braking Control

  • Abdelsalam A. Ahmed
  • , Young Il Lee
  • , Saleh Al Dawsari
  • , Ahmed A.Zaki Diab
  • , Abdelsalam A. Ezzat
  • Tanta University
  • Najran University
  • Northern Borders University
  • Minia University
  • Higher Institute of Engineering and Technology, New Minia

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

This paper presents an advanced energy management system (EMS) for optimizing power distribution in a battery/ultracapacitor (UC) hybrid energy storage system (HESS) for electric vehicles (EVs). The proposed EMS accounts for all energy flow scenarios within a practical driving cycle. A regenerative braking control strategy is developed to maximize kinetic energy recovery using an induction motor, efficiently distributing the recovered energy between the UC and battery. Additionally, a power flow management approach is introduced for both motoring (discharge) and braking (charge) operations via bidirectional buck–boost DC-DC converters. In discharge mode, an optimal distribution factor is dynamically adjusted to balance power delivery between the battery and UC, maximizing efficiency. During charging, a DC link voltage control mechanism prioritizes UC charging over the battery, reducing stress and enhancing energy recovery efficiency. The proposed EMS is validated through simulations and experiments, demonstrating significant improvements in vehicle acceleration, energy efficiency, and battery lifespan.

Original languageEnglish
Article number82
JournalMathematical and Computational Applications
Volume30
Issue number4
DOIs
StatePublished - Aug 2025

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • battery/ultracapacitor hybrid energy storage modules
  • current control mode
  • power flow distribution
  • regenerative braking control
  • voltage control mode

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