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Electric, Hybrid, and Fuel-Cell Vehicles: Architectures and Modeling

IEEE Transactions on Vehicular Technology · 2009 · Vol. 59(2) · pp. 589–598
C.C. ChanAlain BouscayrolKeyu Chen

Abstract

With the advent of more stringent regulations related to emissions, fuel economy, and global warming, as well as energy resource constraints, electric, hybrid, and fuel-cell vehicles have attracted increasing attention from vehicle constructors, governments, and consumers. Research and development efforts have focused on developing advanced powertrains and efficient energy systems. This paper reviews the state of the art for electric, hybrid, and fuel-cell vehicles, with a focus on architectures and modeling for energy management. Although classic modeling approaches have often been used, new systemic approaches that allow better understanding of the interaction between the numerous subsystems have recently been introduced.

Electric and Hybrid Vehicle TechnologiesElectric Vehicles and InfrastructureAdvanced Battery Technologies ResearchPowertrainFuel cellsEnergy managementEngineeringHybrid vehicleElectric vehicleFuel efficiencyAutomotive engineeringSystems engineeringComputer science
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References
Power Electronics and Motor Drives in Electric, Hybrid Electric, and Plug-In Hybrid Electric Vehicles
IEEE Transactions on Industrial Electronics · 2008 · 1,413 citations
Overview of Permanent-Magnet Brushless Drives for Electric and Hybrid Electric Vehicles
IEEE Transactions on Industrial Electronics · 2008 · 1,463 citations
The State of the Art of Electric, Hybrid, and Fuel Cell Vehicles
Proceedings of the IEEE · 2007 · 1,919 citations
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