Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field

The objectives of the work are to develop a non-contact method of detecting internal electro-magnetic defects in synchronous generators based on the analysis of asymmetry of the external magnetic field distribution resulting from damage, establishing the relationship of defects of a generator with t...

Full description

Saved in:
Bibliographic Details
Main Authors: Morozov A.N., Kazakov Ju.B., Morozov N.A., Nesterov S.A.
Format: Article
Language:English
Published: Academy of Sciences of Moldova 2022-08-01
Series:Problems of the Regional Energetics
Subjects:
Online Access:https://journal.ie.asm.md/assets/files/03_03_55_2022.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850057669905219584
author Morozov A.N.
Kazakov Ju.B.
Morozov N.A.
Nesterov S.A.
author_facet Morozov A.N.
Kazakov Ju.B.
Morozov N.A.
Nesterov S.A.
author_sort Morozov A.N.
collection DOAJ
description The objectives of the work are to develop a non-contact method of detecting internal electro-magnetic defects in synchronous generators based on the analysis of asymmetry of the external magnetic field distribution resulting from damage, establishing the relationship of defects of a generator with the pattern of field distribution, identifying diagnostic signs for the defects. These objectives are achieved by developing and using three-dimensional finite-element models of the external magnetic field of synchronous generators, by studying and analyzing the results of nu-merical simulation of external magnetic fields, by comparing the simulation results with experi-mental data. Significant results of the work include the improvement of the non-contact method for detecting internal electromagnetic defects in synchronous generators, revealing how defects of the generator manifest themselves in the asymmetry of magnetic field distribution, and detect-ing the correlation of field asymmetry with the type and severity of defects. For implicit-pole synchronous generators, it is reasonable to use the field asymmetry coefficient determined by the shift in the magnetic field distribution caused by field coils damage. The sign of the coeffi-cient indicates the pole with a damaged field coil. The value of the coefficient characterizes the severity of damage to the field coils, with a critical value of 0.1. The significance of the results lies in the possibility of timely and non-contact diagnostics of internal electromagnetic defects of implicit-pole synchronous generators, which can significantly reduce the economic damage from failures of generators without installation of diagnostic sensors of damage inside the generators.
format Article
id doaj-art-b9d35654ef654678a73fb5a87fc543d4
institution DOAJ
issn 1857-0070
language English
publishDate 2022-08-01
publisher Academy of Sciences of Moldova
record_format Article
series Problems of the Regional Energetics
spelling doaj-art-b9d35654ef654678a73fb5a87fc543d42025-08-20T02:51:23ZengAcademy of Sciences of MoldovaProblems of the Regional Energetics1857-00702022-08-01553273710.52254/1857-0070.2022.3-55.03Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic FieldMorozov A.N.0Kazakov Ju.B.1Morozov N.A.2Nesterov S.A.3Ivanovo State Power Engineering University, Ivanovo, Russian FederationIvanovo State Power Engineering University, Ivanovo, Russian FederationIvanovo State Power Engineering University, Ivanovo, Russian FederationIvanovo State Power Engineering University, Ivanovo, Russian FederationThe objectives of the work are to develop a non-contact method of detecting internal electro-magnetic defects in synchronous generators based on the analysis of asymmetry of the external magnetic field distribution resulting from damage, establishing the relationship of defects of a generator with the pattern of field distribution, identifying diagnostic signs for the defects. These objectives are achieved by developing and using three-dimensional finite-element models of the external magnetic field of synchronous generators, by studying and analyzing the results of nu-merical simulation of external magnetic fields, by comparing the simulation results with experi-mental data. Significant results of the work include the improvement of the non-contact method for detecting internal electromagnetic defects in synchronous generators, revealing how defects of the generator manifest themselves in the asymmetry of magnetic field distribution, and detect-ing the correlation of field asymmetry with the type and severity of defects. For implicit-pole synchronous generators, it is reasonable to use the field asymmetry coefficient determined by the shift in the magnetic field distribution caused by field coils damage. The sign of the coeffi-cient indicates the pole with a damaged field coil. The value of the coefficient characterizes the severity of damage to the field coils, with a critical value of 0.1. The significance of the results lies in the possibility of timely and non-contact diagnostics of internal electromagnetic defects of implicit-pole synchronous generators, which can significantly reduce the economic damage from failures of generators without installation of diagnostic sensors of damage inside the generators.https://journal.ie.asm.md/assets/files/03_03_55_2022.pdfsynchronous generatorselectromagnetic defectsexternal magnetic field
spellingShingle Morozov A.N.
Kazakov Ju.B.
Morozov N.A.
Nesterov S.A.
Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
Problems of the Regional Energetics
synchronous generators
electromagnetic defects
external magnetic field
title Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
title_full Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
title_fullStr Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
title_full_unstemmed Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
title_short Identification of Internal Electromagnetic Defects of Implicit-Pole Synchronous Generators Based on the Information of its External Magnetic Field
title_sort identification of internal electromagnetic defects of implicit pole synchronous generators based on the information of its external magnetic field
topic synchronous generators
electromagnetic defects
external magnetic field
url https://journal.ie.asm.md/assets/files/03_03_55_2022.pdf
work_keys_str_mv AT morozovan identificationofinternalelectromagneticdefectsofimplicitpolesynchronousgeneratorsbasedontheinformationofitsexternalmagneticfield
AT kazakovjub identificationofinternalelectromagneticdefectsofimplicitpolesynchronousgeneratorsbasedontheinformationofitsexternalmagneticfield
AT morozovna identificationofinternalelectromagneticdefectsofimplicitpolesynchronousgeneratorsbasedontheinformationofitsexternalmagneticfield
AT nesterovsa identificationofinternalelectromagneticdefectsofimplicitpolesynchronousgeneratorsbasedontheinformationofitsexternalmagneticfield