학술논문

Feedback Gain Design of Induction Machine Full-Order Flux Observer
Document Type
Periodical
Source
IEEE Transactions on Industrial Electronics IEEE Trans. Ind. Electron. Industrial Electronics, IEEE Transactions on. 70(10):9870-9881 Oct, 2023
Subject
Power, Energy and Industry Applications
Signal Processing and Analysis
Communication, Networking and Broadcast Technologies
Observers
Stability criteria
Stators
Mathematical models
Rotors
Circuit stability
Sensorless control
Feedback gain
full-order flux observer
high-speed operation
induction machine (IM)
parameter sensitivity
sensorless control
stability
Language
ISSN
0278-0046
1557-9948
Abstract
In the field-oriented control of an induction machine (IM), a full-order flux observer has been widely used to estimate the flux. It has several critical issues, such as discrete-time domain instability, dynamics deterioration, and another instability in a low-speed sensorless flux estimation. This article addresses and analyzes these three issues. And it proposes a feedback gain design method for the full-order flux observer to solve the problems. In additional, the parameter sensitivity in the flux estimation is analyzed with a frequency response function. The experiments were conducted with an EV-traction IM. The results show the performances of the proposed feedback gain design in the high-speed operation over the conventional discrete-time domain stability limit, the dynamics improvement in mid- and high-speed region, and the stable operation in the low-speed regeneration mode.