Energy Management and Control in Multiple Storage Energy Units (Battery–Supercapacitor) of Fuel Cell Electric Vehicles

Author:

Sayed KhairyORCID,Abdel-Khalek SayedORCID,Zakaly Hesham M. H.ORCID,Aref Mahmoud

Abstract

This paper presents a new approach of energy management for a fuel cell electric vehicle traction system. This system includes a supercapacitor, a traction battery of valve-regulated sealed lead–acid type, a high-performance permanent magnet traction system, and a power electronics converter. Special attention was placed on the coordination for managing the flow of energy from several sources to treat the concerns of prolonged electric vehicle mileage and battery lifetime for drivetrains of electric vehicles. Connection to a supercapacitor in parallel with the electric vehicle’s battery affects electric vehicle battery lifetime and its range. The paper used a study case of an all-electric train, but the used methods can be applied on hybrid or electric train cases. Fuzzy logic control and proportional integral control methods were used to control the electric vehicle system. The results of these two control methods were examined and compared. The simulation results were compared between the proposed electric vehicle system and the traditional system to show the effectiveness of the proposed method. Comparison of waveforms was made with and without the supercapacitor. The proposed optimized energy management strategy could improve the overall performance of the hybrid system and reduce the power consumption.

Funder

Taif University

Publisher

MDPI AG

Subject

General Materials Science

Reference42 articles.

1. Experimental Study on a Passive Fuel Cell/Battery Hybrid Power System;Chen;Energies,2013

2. Energy Management and Control of Electric Vehicles, Using Hybrid Power Source in Regenerative Braking Operation;Long;Energies,2014

3. Energy Management of a Hybrid AC–DC Micro-Grid Based on a Battery Testing System;Long;Energies,2015

4. EG&G Technical Services, Inc (2004). Fuel Cell Handbook, US Department of Energy, Office of Fossil Energy, National Energy Technology Laboratory. [7th ed.].

5. Tang, T., Han, J., Yao, G., and Feng, Y. (September, January 30). Development of a PEM Fuel Cell Boat. Proceedings of the 12th International Power Electronics and Motion Control Conference (EPE-PEMC), Portoroz, Slovenia.

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