Study Power Management of Hybrid Electric Vehicle Using Battery Model Simulation
Essam Allam
Abstract
Essam Allam
Abstract
This paper discusses the need for modeling and simulation of hybrid electric vehicle (HEV) Different modeling methods are presented with powertrain component and system modeling examples. The mattlab/simulink modelling and simulation of the hybrid electric vehicle (HEV) are represented in this paper. This simulation tool is meant as a help in the design and evaluation of the hybrid electric vehicle. Components in the driveline can be varied and the effect on the hybrid electric vehicle efficiency can be investigated. Both simulation tools are consist of a simulink vehicle model, where the driveline components are represented as interconnected blocks that are communicating physical signals between each other in the level of seconds. The demonstration shows different operating modes of the HEV over one complete cycle: accelerating, cruising, recharging the battery while accelerating and regenerative braking.
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This paper discusses the need for modeling and simulation of hybrid electric vehicle (HEV) Different modeling methods are presented with powertrain component and system modeling examples. The mattlab/simulink modelling and simulation of the hybrid electric vehicle (HEV) are represented in this paper. This simulation tool is meant as a help in the design and evaluation of the hybrid electric vehicle. Components in the driveline can be varied and the effect on the hybrid electric vehicle efficiency can be investigated. Both simulation tools are consist of a simulink vehicle model, where the driveline components are represented as interconnected blocks that are communicating physical signals between each other in the level of seconds. The demonstration shows different operating modes of the HEV over one complete cycle: accelerating, cruising, recharging the battery while accelerating and regenerative braking.
Key concepts: Powertrain, Electric vehicle, Automotive engineering, Battery (electricity), Driving cycle, Modeling and simulation, Component (thermodynamics), Engineering