Electric Vehicle Powertrain modelling using Simulink

This is a brief electric vehicle powertrain model covering crucial forces such as rolling, aerodynamic, gradient and acceleration.
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Updated 12 Mar 2023

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The mathematical modelling for longitudinal dynamics of an Electric vehicle is created. The mathematical model plays a crucial role in design the powertrain for any vehicle. The mathematical model includes all the necessary components to produce the required forces to propel the vehicle and the other resistive forces acting on the vehicle. The resulting equation of the longitudinal vehicle dynamics will help us understand the behaviour of vehicle at different scenarios.
Visit this link to better understand about the simulation workflow:

Cite As

Farhan Ahamed (2024). Electric Vehicle Powertrain modelling using Simulink (https://www.mathworks.com/matlabcentral/fileexchange/104650-electric-vehicle-powertrain-modelling-using-simulink), MATLAB Central File Exchange. Retrieved .

MATLAB Release Compatibility
Created with R2021a
Compatible with R2017a to R2021b
Platform Compatibility
Windows macOS Linux

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Powertrain simulations

Version Published Release Notes
1.0.2

Files compatible up to R2017a

1.0.1

Project webpage link update

1.0.0