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Speed Control of Magnetic Drive-Trains with Pole-Slipping Amelioration

Version 4 2024-03-12, 20:44
Version 3 2023-10-29, 17:58
journal contribution
posted on 2024-03-12, 20:44 authored by Xiaowen Liao, Chris BinghamChris Bingham, Tim SmithTim Smith

The paper introduces new techniques to reduce the potential for pole-slipping induced by control systems and presents a low-cost pole-slipping detection and recovery scheme for magnetic drive-trains (MDTs). For the first time, the paper shows that a combination of electromagnetic and load-torque excitations which individually are not greater than the maximum coupling torque can initiate pole-slipping. For applications where acceleration feedback is unavailable, the motor-side inertia is virtually increased with a tracking differentiator to provide feedback of acceleration. Subse- quently, controller design and parameter optimization are discussed. Experimental measurements on a custom test facility verify the presented principles that low-bandwidth controller designs with low inertia ratios can accommodate a wider range of on-load startup torque and load-torque disturbances without pole-slipping. To address overload issues, a pole-slipping detection method based on the kurtosis of electromagnetic torque and a recovery strategy based on converting the state of pole- slipping into that of on-load startup are presented. Experimental results demonstrate that detecting slip anomalies without load-side information, and recovery from pole-slipping without auxiliary mechanical devices are both feasible.

History

School affiliated with

  • School of Engineering (Research Outputs)

Publication Title

Energies

Volume

15

Issue

21

Publisher

MDPI

ISSN

1996-1073

Date Submitted

2022-11-21

Date Accepted

2022-10-28

Date of First Publication

2022-11-01

Date of Final Publication

2022-11-01

Date Document First Uploaded

2022-11-01

ePrints ID

52289

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