Dissertation > Excellent graduate degree dissertation topics show

Speed-Sensorless Direct Torque Control System of Induction Motors’ Design and Implementation

Author: XuZuo
Tutor: WanHeng
School: East China University of Science and Technology
Course: Control Science and Engineering
Keywords: Induction motor Direct Torque Control System Average stator flux-oriented Model Reference Adaptive Control Speed-sensorless
CLC: TM343
Type: Master's thesis
Year: 2012
Downloads: 131
Quote: 0
Read: Download Dissertation

Abstract


With the development of the power electronic and digital control technology, various types of motor control technologies are emerging. Among them, the direct torque control has received widespread attention for its novel control thoughts, simple control structure and excellent control performance. In order to meet the requirements of multi-motors coordination control, a new method based on the average stator flux-oriented control is proposed from the traditional DTC theory. By controlling the total stator current, the method has realized the purpose of the control of the average stator flux-component and average torque-component simultaneously. After the theoretical derivation, the feasibility of this method has been verified on the PSIM simulation platform.In addition, speed sensors installed in the AC drive system will make the system diseconomy, large and low-reliability. This paper focuses on the study of sensorless DTC for AC motors, first analyzes the direct speed estimation method and Model Reference Adaptive Control method. On this basis, a mutual MRAS method is proposed and applied in the single inverter drives double motors DTC system. Simulation results show that this new method has good speed identification performance in both low and high speed ranges.After the completion of the theoretical derivation and simulation, the hardware platform and the software are designed. The experimental results verify that the mutual MRAS method applied in the single inverter drives double motors DTC system has both good dynamic and steady performance.

Related Dissertations

  1. Research on Vector Control System of Induction Motor Based on DSP,TM346
  2. The Design of Experimental Device for Mine Motor Soft Starter,TM343.2
  3. Study of Low Speed Control Strategy on Induction Motor Speed Sensorless,TM343
  4. DSP-based Three-level Asynchronous Motor Direct Torque Control,TM343.2
  5. Dual power switch switching Key Issues,TM762.1
  6. Study on the Fault Diagnosis of Asynchronous Induction Motor Base on the Wavelet Analysis,TH165.3
  7. Research on Control of Doubly Fed Wind Power System in Case of Speed Sensor Failure,TM315
  8. Research on Intelligent Control Strategy of Flatness for Tandem Cold Mill,TP273.5
  9. Research on Tension Control for the Line of Calender,TQ336.1
  10. Design of State Feedback and Adaptive Controller for Magnetic Suspension System of Numerically Controlled Machine Tool,TP273.2
  11. The Application of Discrete Adaptive Controller in Valve Controlled Asymmetrical Cylinder Electro-Hydraulic System,TP273
  12. The Study of Permanent Magnet Synchronous Motor Sensorless Control System Based on Observers,TM341
  13. Research of Giant Magnetostrictive Actuator Algorithm and Device Based on Model Reference Adaptive Control,TP273
  14. Multivariable Robust direct model reference adaptive control,TP273.2
  15. Research on Power Supply Switching Mechanism of Important Loads in Power Plant,TM712
  16. Research on Optimal Control of Vehicle,U461.6
  17. Study on Load Model Aggregation of Electric Power Systems,TM714
  18. Research on Light-Load Oscillation Suppression Strategies of Variable Frequency Inverter-Driven Induction Motors,TM921.51
  19. Research of Speed Sensorless Vector Control System Based on Stator Flux-oriented,TP212
  20. Study on DSP-Based Four-Quadrant Control System of Induction Motor,TM346
  21. Control Technology for Bearingless Permanent Magnet Synchronous Motor,TM341

CLC: > Industrial Technology > Electrotechnical > Motor > AC motor > Induction motor
© 2012 www.DissertationTopic.Net  Mobile