Robust Adaptive Control System for Induction Motor Drive Without Speed Sensor at Low Speed

저속영역에서 속도검출기가 없는 유도전동기의 강인성 적응제어 시스템

  • Kim, Min-Heui (Dept. of Electricity, Yeungnam College of Science & Technology)
  • Received : 1999.07.16
  • Accepted : 1999.10.05
  • Published : 1999.10.31

Abstract

The paper describes a robust adaptive control algorithm for induction motor drive without speed sensor at low speed range. The control algorithm use only current sensors in a space vector pulse width modulation within loop control with rotor speed estimation and voltage source inverter. On-line rotor speed estimation is based on utilizing parallel model reference adaptive control system. MRAC of the modified flux model for flux and rotor speed estimator uses dual-adaptation mechanism, ${\omega}_r$ and ${\omega}_e$ scheme. The estimated flux components in the model can be compensated from the effects of offset errors on pure integrals. It can be compensated to the parameter variations and torque fluctuation with speed estimation in less then 10 rad/sec. In a simulation, the proposed induction motor control algorithm without speed sensor at very low speed range are shown to operate very well in spite of variable rotor time constant and fluctuating load without change the controller parameters. The suggested control strategy and estimation method have been validated by simulation study, and it proposed the designed system for the implementation using TI320C31 DSP/ASIC controller.

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Acknowledgement

Supported by : 한국학술진흥재단