Title :
A Discrete-Time Direct Torque Control for Direct-Drive PMSG-Based Wind Energy Conversion Systems
Author :
Zhe Zhang ; Yue Zhao ; Wei Qiao ; Liyan Qu
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Nebraska-Lincoln, Lincoln, NE, USA
Abstract :
This paper proposes a novel flux-space-vector-based direct torque control (DTC) scheme for permanent-magnet synchronous generators (PMSGs) used in variable-speed direct-drive wind energy conversion systems (WECSs). The discrete-time control law, which is derived from the perspective of flux space vectors and load angle, predicts the desired stator flux vector for the next time-step with the torque and stator flux information only. The space vector modulation (SVM) is then employed to generate the reference voltage vector, leading to a fixed switching frequency, as well as lower flux and torque ripples, when compared to the conventional DTC. Compared with other SVM-based DTC methods in the literature, the proposed DTC scheme eliminates the use of proportional-integral regulators and is less dependent on machine parameters, e.g., stator inductances and permanent-magnet flux linkage, while the main advantages of the DTC, e.g., fast dynamic response and no need of coordinate transform, are preserved. The proposed DTC scheme is applicable for both nonsalient-pole and salient-pole PMSGs. The overall control scheme is simple to implement and is robust to parameter uncertainties and variations of the PMSGs. The effectiveness of the proposed discrete-time DTC scheme is verified by simulation and experimental results on a 180-W salient-pole PMSG and a 2.4-kW nonsalient-pole PMSG used in variable-speed direct-drive WECSs.
Keywords :
PI control; discrete time systems; drives; machine vector control; magnetic flux; permanent magnet generators; stators; synchronous generators; torque control; wind power plants; DTC methods; SVM; coordinate transform; direct-drive PMSG; direct-drive wind energy conversion systems; discrete-time DTC scheme; discrete-time control law; discrete-time direct torque control; dynamic response; flux space vectors; flux-space-vector-based direct torque control; load angle; nonsalient-pole PMSG; permanent-magnet flux linkage; permanent-magnet synchronous generators; power 180 W; power 2.4 kW; proportional-integral regulators; reference voltage vector; space vector modulation; stator flux information; stator inductances; switching frequency; torque ripples; variable-speed direct-drive WECS; Control systems; Couplings; Rotors; Stators; Torque; Vectors; Wind turbines; Direct torque control (DTC); flux space vector; load angle analysis; permanent-magnet synchronous generator (PMSG); wind energy conversion system (WECS);
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2015.2413760