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Battery Storage Sizing in a Retrofitted Plug-in Hybrid Electric Vehicle.

, , , and . IEEE Trans. Vehicular Technology, 59 (6): 2786-2794 (2010)

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Profile of Charging Load on the Grid Due to Plug-in Vehicles., , and . IEEE Trans. Smart Grid, 3 (1): 135-141 (2012)On Conversion of Hybrid Electric Vehicles to Plug-In., , and . IEEE Trans. Vehicular Technology, 59 (4): 2016-2020 (2010)Using Large Driving Record Samples and a Stochastic Approach for Real-World Driving Cycle Construction: Winnipeg Driving Cycle., , and . Transp. Sci., 48 (2): 170-183 (2014)Modeling and Simulation of a Series Parallel Hybrid Electric Vehicle Using REVS., , , and . ACC, page 4413-4418. IEEE, (2007)Battery Storage Sizing in a Retrofitted Plug-in Hybrid Electric Vehicle., , , and . IEEE Trans. Vehicular Technology, 59 (6): 2786-2794 (2010)Modeling, Simulation and Control of Flat Panel Solar Collectors with Thermal Storage for Heating and Cooling Applications., , , , , and . ANT/SEIT, volume 19 of Procedia Computer Science, page 686-693. Elsevier, (2013)Statistical Development of a Duty Cycle for Plug-in Vehicles in a North American Urban Setting Using Fleet Information., , and . IEEE Trans. Vehicular Technology, 59 (8): 3710-3719 (2010)PEV Charging Profile Prediction and Analysis Based on Vehicle Usage Data., , , and . IEEE Trans. Smart Grid, 3 (1): 341-350 (2012)