DocumentCode
3112579
Title
Load torque compensator for Model Predictive Direct Current Control in high power PMSM drive systems
Author
Preindl, Matthias ; Schaltz, Erik
Author_Institution
Power Electron. Syst. Lab., ETH Zurich, Zurich, Switzerland
fYear
2010
fDate
4-7 July 2010
Firstpage
1347
Lastpage
1352
Abstract
In drive systems the most used control structure is the cascade control with an inner torque, i.e. current and an outer speed control loop. The fairly small converter switching frequency in high power applications, e.g. wind turbines lead to modest speed control performance. An improvement bring the use of a current controller which takes into account the discrete states of the inverter, e.g. DTC or a more modern approach: Model Predictive Direct Current Control (MPDCC). Moreover overshoots and oscillations in the speed are not desired in many applications, since they lead to mechanical stress, oscillations in the power etc. For this reason the integrating action of the speed controller must be limited leading to offsets in the speed control and a poor response to load torque variations. For this reason a load torque estimator is proposed in this paper in order to further improve MPDCC dynamic behaviour. It compensates the load torque influence on the speed control setting a feed forward torque value, i.e. current reference value. The benefits are twice. The speed controller reaches immediately the speed reference value avoiding offsets which must be compensated by the weak integrator. Moreover, a better response to load torque variations which are detected and compensated leading to small speed variations is obtained.
Keywords
angular velocity control; compensation; electric current control; feedforward; invertors; machine control; permanent magnet motors; power convertors; predictive control; synchronous motor drives; torque control; wind turbines; cascade control; current reference and value; fairly small converter switching frequency; feedforward torque value; high power permanent magnet synchronous machine drive systems; inverter; load torque compensator; mechanical stress; model predictive direct current control; speed control loop; wind turbines; Bandwidth; Current control; Inverters; Load modeling; Observers; Torque; Velocity control;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics (ISIE), 2010 IEEE International Symposium on
Conference_Location
Bari
Print_ISBN
978-1-4244-6390-9
Type
conf
DOI
10.1109/ISIE.2010.5637144
Filename
5637144
Link To Document