In electric vehicles with multiple motors, the torque at each wheel can be controlled independently, offering significant opportunities for enhancing vehicle dynamics behaviour and system efficiency. This paper investigates energy efficient torque distribution strategies for improving the operational efficiency of electric vehicles with multiple motors. The proposed strategies are based on the minimisation of power losses, considering the powertrain efficiency characteristics, and are easily implementable in real-time. A longitudinal dynamics vehicle model is developed in Simulink/Simscape environment, including energy models for the electrical machines, the converter, and the energy storage system. The energy efficient torque distribution ...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
I veicoli elettrici sono ad oggi considerati una soluzione promettente per risolvere il problema del...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
© 2019, Levrotto and Bella. All rights reserved. Electric vehicles are the future of private passeng...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
In electric vehicles with multiple motors, the torque at each wheel can be controlled independently,...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
I veicoli elettrici sono ad oggi considerati una soluzione promettente per risolvere il problema del...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
© 2019, Levrotto and Bella. All rights reserved. Electric vehicles are the future of private passeng...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...