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Artificial loading of the induction motors using a matrix converter

Klumpner, C.; Boldea, I.; Blaabjerg, F.

Authors

I. Boldea

F. Blaabjerg



Abstract

The paper discuses the use of a frequency converter for artificial loading of an induction motor. The characteristic of the artificial loading requires a cyclic circulation of energy between the converter and motor in order to increase the motor current and torque to the rated values without any load on the motor shaft. It is known that standard converters have serious limitations regarding the circulating energy, and if the incoming energy exceeds the storage capacity of the DC-link capacitors, an overvoltage fault may occur in the converter. This limitation can be overridden by using an unidirectional power flow converter with high energy-storage capability in the DC-link or by using a bi-directional power flow converter with reduced energy storage. Two possible bi-directional power flow converter topologies are investigated: the back-to-back voltage source inverter (VSI) and the matrix converter. A comparative analysis of two bi-directional power flow converters shows that the energy stored in the reactive components of a matrix converter is minimized. It is proven that the matrix converter may be successfully used in artificial loading of the induction motors.

Citation

Klumpner, C., Boldea, I., & Blaabjerg, F. (2000). Artificial loading of the induction motors using a matrix converter. . https://doi.org/10.1049/cp%3A20000217

Presentation Conference Type Conference Paper (Published)
Conference Name Eighth International Conference on Power Electronics and Variable Speed Drives
Start Date Sep 18, 2000
End Date Sep 19, 2000
Online Publication Date Aug 6, 2002
Publication Date Sep 18, 2000
Deposit Date Jun 27, 2024
Publisher Institution of Engineering and Technology (IET)
Pages 40-45
ISBN 0852967292
DOI https://doi.org/10.1049/cp%3A20000217
Public URL https://nottingham-repository.worktribe.com/output/35446112
Publisher URL https://digital-library.theiet.org/content/conferences/10.1049/cp_20000217
Related Public URLs https://ieeexplore.ieee.org/abstract/document/888894