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A New Battery/UltraCapacitor Hybrid Energy Storage System for Electric, Hybrid, and Plug-In Hybrid Electric Vehicles

IEEE Transactions on Power Electronics · 2011 · Vol. 27(1) · pp. 122–132
Jian Bo CaoAli Emadi

Abstract

In this paper, a new battery/ultracapacitor hybrid energy storage system (HESS) is proposed for electric drive vehicles including electric, hybrid electric, and plug-in hybrid electric vehicles. Compared to the conventional HESS design, which uses a larger dc/dc converter to interface between the ultracapacitor and the battery/dc link to satisfy the real-time peak power demands, the proposed design uses a much smaller dc/dc converter working as a controlled energy pump to maintain the voltage of the ultracapacitor at a value higher than the battery voltage for the most city driving conditions. The battery will only provide power directly when the ultracapacitor voltage drops below the battery voltage. Therefore, a relatively constant load profile is created for the battery. In addition, the battery is not used to directly harvest energy from the regenerative braking; thus, the battery is isolated from frequent charges, which will increase the life of the battery. Simulation and experimental results are presented to verify the proposed system.

Advanced Battery Technologies ResearchElectric and Hybrid Vehicle TechnologiesSupercapacitor Materials and FabricationBattery (electricity)SupercapacitorAutomotive batteryVoltageAutomotive engineeringElectrical engineeringEnergy storageTrickle chargingElectric vehicleRegenerative brake
Citations
1,160
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References
Energy Storage Systems for Automotive Applications
IEEE Transactions on Industrial Electronics · 2008 · 1,019 citations
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