DocumentCode :
45063
Title :
Universal acoustic modelling framework for electrical drives
Author :
Boesing, Matthias ; Hofmann, Andreas ; De Doncker, Rik
Author_Institution :
Robert Bosch GmbH, Stuttgart, Germany
Volume :
8
Issue :
5
fYear :
2015
fDate :
5 2015
Firstpage :
693
Lastpage :
699
Abstract :
The interdisciplinary task of assessing the acoustic characteristics of electrical drive-systems gains importance in traction, industrial and consumer applications. This study presents a universal acoustic modelling framework for efficient, high-quality acoustic modelling of electrical drives. The objective is to make drive acoustic modelling and assessment of an integral part of drive-system design. The approach integrates directly into the general drive-system design process and can be applied to all types of machines (synchronous, induction, switched reluctance and direct current). Inverter-operation-related switching frequencies and spatial machine harmonics are routinely taken into account. The process is applicable to machines with rotor or stator skew as well as to outer-rotor and transversal-flux machines. It combines the two fast and user-interactive steps system simulation and vibration synthesis. The underlying model parameters are obtained via automated offline finite-element simulations based on generic input parameters. This allows using complex electromagnetic and structural models without computation time becoming prohibitive. Application examples are given for permanent magnet synchronous machine traction drives for (hybrid) electric vehicles as well as a for a switched-reluctance auxiliary drive. Simulated run-up spectrograms for structure-borne sound are validated against measurements and operational deflections are presented.
Keywords :
asynchronous machines; finite element analysis; hybrid electric vehicles; invertors; permanent magnet machines; reluctance machines; rotors; stators; traction motor drives; acoustic characteristics; automated offline finite-element simulations; complex electromagnetic models; consumer applications; direct current machines; drive-system design; electrical drives; generic input parameters; hybrid electric vehicles; induction machines; industrial applications; interdisciplinary task; inverter-operation; outer-rotor; permanent magnet synchronous machine; rotor skew; spatial machine harmonics; stator skew; structural models; switched reluctance machines; switched-reluctance auxiliary drive; switching frequency; synchronous machines; traction applications; traction drives; transversal-flux machines; universal acoustic modelling framework;
fLanguage :
English
Journal_Title :
Power Electronics, IET
Publisher :
iet
ISSN :
1755-4535
Type :
jour
DOI :
10.1049/iet-pel.2014.0658
Filename :
7095658
Link To Document :
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