Model predictive torque control of a switched reluctance drive with heat dissipation balancing in a power converter

Anuchin, Alecksey, Podzorova, Valentina, Popova, Viktoriya, Gulyaev, Igor, Briz, Fernando and Vagapov, Yuriy (2020) Model predictive torque control of a switched reluctance drive with heat dissipation balancing in a power converter. In: 60th IEEE Int. Sci. Conf. on Power and Electrical Engineering, 7-9 Oct. 2019, Riga Technical University, Riga, Latvia.

[img] Text
GURO_426_RTUCON2019.pdf - Accepted Version

Download (614kB)

Abstract

The switched reluctance machines are known for their torque pulsations. The precise torque control is usually implemented by varying commutation angles and applying direct torque control. But still the problem of pulsation occurs during phase change. This paper proposes a model predictive direct torque control method, which cost function takes into account both torque and current control including heat dissipation balancing in a power converter. The proposed control strategy was examined using a simulation model and provides precise torque control. Heat dissipation balancing helps to equalize power modules temperature increasing the maximum output power of the power converter.

Item Type: Conference or Workshop Item (Paper)
Keywords: switched reluctance drive, model predictive control, direct torque control, active thermal control
Divisions: Applied Science, Computing and Engineering
Depositing User: Hayley Dennis
Date Deposited: 10 Feb 2020 14:10
Last Modified: 10 Feb 2020 14:10
URI: https://glyndwr.repository.guildhe.ac.uk/id/eprint/17550

Actions (login required)

Edit Item Edit Item