Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults

Disk Type Variable Reluctance (DTVR) resolvers have distinguished performance under run out fault comparing to conventional sinusoidal rotor resolvers. However, their accuracy under inclined rotor fault along with different types of eccentricities includes static and dynamic eccentricities are quest...

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Main Authors: F. Tootoonchian, F. Zare
Format: Article
Language:English
Published: Iran University of Science and Technology 2018-09-01
Series:Iranian Journal of Electrical and Electronic Engineering
Subjects:
Online Access:http://ijeee.iust.ac.ir/browse.php?a_code=A-10-263-7&slc_lang=en&sid=1
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spelling doaj-8a5a457d401148e18db0d9657b15d5762020-11-24T21:29:12ZengIran University of Science and TechnologyIranian Journal of Electrical and Electronic Engineering1735-28272383-38902018-09-01143299307Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical FaultsF. Tootoonchian0F. Zare1 Electrical Engineering Department, Iran University of Science and Technology, Tehran, Iran. Electrical Engineering Department, Isfahan University of Technology, Isfahan, Iran. Disk Type Variable Reluctance (DTVR) resolvers have distinguished performance under run out fault comparing to conventional sinusoidal rotor resolvers. However, their accuracy under inclined rotor fault along with different types of eccentricities includes static and dynamic eccentricities are questioned. Furthermore, due to thin copper wires that are used for signal and excitation coils of resolver there is high risk of short circuit fault in the coils. So, in this study the performance of the sinusoidal rotor DTVR resolver under the mentioned faults are studied. The quality of output voltages along with position error of the sensor is discussed. 3-D time stepping finite element method is used to show the effect of different faults. Finally, the prototype of the studied resolver is constructed and tested. The employed test bed is built in such a way that is able to apply controllable level of different mechanical faults. Good agreement is obtained between the finite element and the experimental results, validating the success of the presented analysis.http://ijeee.iust.ac.ir/browse.php?a_code=A-10-263-7&slc_lang=en&sid=1Disk Type Variable Reluctance (DTVR) Resolver Eccentricity Resolver Sinusoidal Variation of the Coupling Area Short Circuit 3-D Finite Element Analysis Mechanical Faults.
collection DOAJ
language English
format Article
sources DOAJ
author F. Tootoonchian
F. Zare
spellingShingle F. Tootoonchian
F. Zare
Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
Iranian Journal of Electrical and Electronic Engineering
Disk Type Variable Reluctance (DTVR) Resolver
Eccentricity
Resolver
Sinusoidal Variation of the Coupling Area
Short Circuit
3-D Finite Element Analysis
Mechanical Faults.
author_facet F. Tootoonchian
F. Zare
author_sort F. Tootoonchian
title Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
title_short Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
title_full Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
title_fullStr Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
title_full_unstemmed Performance Analysis of Disk Type Variable Reluctance Resolver under Mechanical and Electrical Faults
title_sort performance analysis of disk type variable reluctance resolver under mechanical and electrical faults
publisher Iran University of Science and Technology
series Iranian Journal of Electrical and Electronic Engineering
issn 1735-2827
2383-3890
publishDate 2018-09-01
description Disk Type Variable Reluctance (DTVR) resolvers have distinguished performance under run out fault comparing to conventional sinusoidal rotor resolvers. However, their accuracy under inclined rotor fault along with different types of eccentricities includes static and dynamic eccentricities are questioned. Furthermore, due to thin copper wires that are used for signal and excitation coils of resolver there is high risk of short circuit fault in the coils. So, in this study the performance of the sinusoidal rotor DTVR resolver under the mentioned faults are studied. The quality of output voltages along with position error of the sensor is discussed. 3-D time stepping finite element method is used to show the effect of different faults. Finally, the prototype of the studied resolver is constructed and tested. The employed test bed is built in such a way that is able to apply controllable level of different mechanical faults. Good agreement is obtained between the finite element and the experimental results, validating the success of the presented analysis.
topic Disk Type Variable Reluctance (DTVR) Resolver
Eccentricity
Resolver
Sinusoidal Variation of the Coupling Area
Short Circuit
3-D Finite Element Analysis
Mechanical Faults.
url http://ijeee.iust.ac.ir/browse.php?a_code=A-10-263-7&slc_lang=en&sid=1
work_keys_str_mv AT ftootoonchian performanceanalysisofdisktypevariablereluctanceresolverundermechanicalandelectricalfaults
AT fzare performanceanalysisofdisktypevariablereluctanceresolverundermechanicalandelectricalfaults
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