DocumentCode :
509449
Title :
Based on u-n under the Flux Observer Spindle Motor Direct Torque Control System Simulation
Author :
Xu, Fang ; Zhang, Ke ; Zhang, Lixiu ; Wu, Yuhou
Author_Institution :
Traffic&Mech. Eng. Sch., Shenyang Jianzhu Univ., Shenyang, China
Volume :
1
fYear :
2009
fDate :
26-27 Dec. 2009
Firstpage :
119
Lastpage :
122
Abstract :
Purpose: to study the performance of DTC system (direct torque control) within the Motorized Spindle full-speed range, and to improve the observation precision of Motorized Spindle stator flux by adopting the Full-order stator flux observer. Method: construct a Motorized Spindle DTC system based on the mathematical model of Motorized Spindle under a static stator reference frame; revise the deviation between status value and measured value of the Motorized Spindle, then build a Full-order magnetic flux observer with error-compensator based on close-loop state estimation by combining the feedback correction term and the mathematical model of Motorized Spindle with flux estimation; build a Full-order flux observer and simulate the Motorized Spindle DTC system by Matlab/Simulink so that the simulative waveform of stator flux would be obtained. Result: the correctness of Full-order stator flux observer at various speed ranges is verified. Conclusion: Full-order u-n stator flux observer shows satisfactory dynamic performance in Motorized Spindle DTC system; the u-n stator flux observer model that is constructed by choosing the proper way to set the pole of observer reduces the interference of temperature, frequency, magnetic path etc.
Keywords :
closed loop systems; error compensation; machine control; observers; state estimation; stators; torque control; close-loop state estimation; direct torque control system simulation; error compensator; flux observer spindle motor system simulation; full-order stator flux observer; full-order u-n stator flux observer; motorized spindle full-speed range; Error correction; Interference; Magnetic flux; Mathematical model; Observers; State estimation; State feedback; Stators; Temperature; Torque control; DTC; MATLAB/Simulink simulation; stator flux; u-nstator flux observer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Management, Innovation Management and Industrial Engineering, 2009 International Conference on
Conference_Location :
Xi´an
Print_ISBN :
978-0-7695-3876-1
Type :
conf
DOI :
10.1109/ICIII.2009.35
Filename :
5370406
Link To Document :
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