Journal Article

·2015

A discrete-time current controller for permanent magnet synchronous motor drives

Türker Türker YTU , Umit Buyukkeles , Hüseyin Meşe , Faruk Bakan YTU

Abstract

A discrete-time current controller is presented for the current loop of the permanent magnet synchronous motor drives. Firstly, the difference equations of current errors are obtained for constant reference values. Then, a dead-beat controller is designed to drive the dq-axes currents to the desired values. Discrete-time integral action with an anti-windup scheme is added to the dead-beat structure to achieve a better steady-state behaviour. In order to improve the transient properties of the controller, a current prediction scheme based on dead-beat structure is also introduced to the controller. Finally, the proposed controller is implemented through numerical simulations to illustrate the effectiveness for both transient and steady-state responses.

Keywords

Control theory (sociology) Permanent magnet synchronous motor Transient (computer programming) Synchronous motor Controller (irrigation) Open-loop controller Dead time Discrete time and continuous time Current loop Computer science Steady state (chemistry) Magnet Control engineering Current (fluid) Engineering Mathematics Closed loop Electrical engineering

Subject Areas

Multilevel Inverters and Converters ·Electrical and Electronic Engineering ·Physical Sciences
Electric Motor Design and Analysis ·Electrical and Electronic Engineering ·Physical Sciences
Sensorless Control of Electric Motors ·Electrical and Electronic Engineering ·Physical Sciences

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