Active Cancellation of Vibration in Switched Reluctance Motor Using Mechanical Impulse Response Method

Date

2019-05-13

ORCID

Journal Title

Journal ISSN

Volume Title

Publisher

Institute of Electrical and Electronics Engineers Inc.

item.page.doi

Abstract

Vibration and acoustic noise are considered as major factors preventing the widespread use of switched reluctance motor (SRM) drives in industrial and commercial applications. In this paper, a new active vibration cancellation (AVC) strategy for radial vibration is proposed based on the optimal current switching instants. The mechanical impulse response method has been used to estimate the radial vibration of the stator and an optimization routine was developed to define the optimal instants for phase current switching in such a way that the resulting vibration would cancel the vibration caused by prior switching. Experimental verification was conducted on an 8/6 SRM and the results show significant reduction in the stator radial vibration which in turn contributes to reduction of acoustic noise.

Description

Due to copyright restrictions and/or publisher's policy full text access from Treasures at UT Dallas is limited to current UTD affiliates (use the provided Link to Article).

Keywords

Acceleration (Mechanics), Noise, Reluctance motors, Rotors, Compressors—Blades, Switches, Active noise and vibration control, Vibration

item.page.sponsorship

Rights

©2019 IEEE

Citation

Collections