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DC poleHodnotaJazyk
dc.contributor.authorKünkel, Sven Johannes
dc.date.accepted2023-12-14
dc.date.accessioned2023-12-18T23:10:54Z-
dc.date.available2022-6-21
dc.date.available2023-12-18T23:10:54Z-
dc.date.issued2023
dc.date.submitted2023-9-12
dc.identifier95604
dc.identifier.urihttp://hdl.handle.net/11025/54998-
dc.description.abstractThe work was focused on the research and development of methods, software and the necessary components of the measuring chain for the purpose of analysis and subsequent monitoring of the torsional interaction of the turbine-generator with the events in the electricity network. As described, the torsional interaction is enabled by means of the air-gap torque of the generator, as this is a quantity dependent both on the motion state of the rotor as well as on the current electrical state of the generator. The complexity of the problem is due to the fact that the information on torsional vibration cannot be measured directly, as for example the absolute vibration of bearings, but a special measurement and a relatively complex post-processing must be used. As part of the work, an algorithm was developed and successfully validated for the evaluation of the instantaneous angular velocity, from which the amplitude and frequency of the rotor torsional oscillation can subsequently be evaluated. In addition, some limitations of the proposed method are discussed, as well as limitations resulting from the nature of measuring torsional oscillations with an incremental encoder. The presented case studies prove the existence of significant oscillatory components with a variable frequency originating in the power grid relevant for torsional viration excitation. Furthermore, examples were shown where a sudden change in the state of the electricity network caused a transient excitation of the torsional oscillations of the turbine-generator rotor. A TVMS Torsional Vibration Monitoring System was assembled and programmed in the Labview programming language which has already been deployed on 14 turbine-generators with a total capacity of 3 GW.cs
dc.format101 (30489 slov)
dc.language.isoen
dc.publisherZápadočeská univerzita v Plzni
dc.rightsPlný text práce je přístupný bez omezení
dc.subjectinteraction between the turbine-generator and the power gridcs
dc.subjecttorsional vibrationcs
dc.subjectvibration monitoringcs
dc.subjectcondition monitoringcs
dc.subjectturbine-generatorcs
dc.subjectsignal processingcs
dc.subjectrecursive methodscs
dc.titleNÁVRH A IMPLEMENTACE METODY MONITORINGU INTERAKCE MEZI TURBOGENERÁTOREM A ELEKTRIZAČNÍ SÍTÍcs
dc.title.alternativeDESIGN AND IMPLEMENTATION OF A METHOD OF MONITORING THE INTERACTION BETWEEN THE TURBINE-GENERATOR AND THE ELECTRICAL NETWORKen
dc.typedisertační práce
dc.thesis.degree-namePh.D.
dc.thesis.degree-levelDoktorský
dc.thesis.degree-grantorZápadočeská univerzita v Plzni. Fakulta aplikovaných věd
dc.thesis.degree-programAplikované vědy a informatika
dc.description.resultObhájeno
dc.description.abstract-translatedThe work was focused on the research and development of methods, software and the necessary components of the measuring chain for the purpose of analysis and subsequent monitoring of the torsional interaction of the turbine-generator with the events in the electricity network. As described, the torsional interaction is enabled by means of the air-gap torque of the generator, as this is a quantity dependent both on the motion state of the rotor as well as on the current electrical state of the generator. The complexity of the problem is due to the fact that the information on torsional vibration cannot be measured directly, as for example the absolute vibration of bearings, but a special measurement and a relatively complex post-processing must be used. As part of the work, an algorithm was developed and successfully validated for the evaluation of the instantaneous angular velocity, from which the amplitude and frequency of the rotor torsional oscillation can subsequently be evaluated. In addition, some limitations of the proposed method are discussed, as well as limitations resulting from the nature of measuring torsional oscillations with an incremental encoder. The presented case studies prove the existence of significant oscillatory components with a variable frequency originating in the power grid relevant for torsional viration excitation. Furthermore, examples were shown where a sudden change in the state of the electricity network caused a transient excitation of the torsional oscillations of the turbine-generator rotor. A TVMS Torsional Vibration Monitoring System was assembled and programmed in the Labview programming language which has already been deployed on 14 turbine-generators with a total capacity of 3 GW.en
dc.title.otherNÁVRH A IMPLEMENTACE METODY MONITORINGU INTERAKCE MEZI TURBOGENERÁTOREM A ELEKTRIZAČNÍ SÍTÍ
dc.subject.translatedinteraction between the turbine-generator and the power griden
dc.subject.translatedtorsional vibrationen
dc.subject.translatedvibration monitoringen
dc.subject.translatedcondition monitoringen
dc.subject.translatedturbine-generatoren
dc.subject.translatedsignal processingen
dc.subject.translatedrecursive methodsen
Vyskytuje se v kolekcích:Disertační práce / Dissertations (KKY)

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DIS_EN_FINAL_PRINT.pdfPlný text práce5,06 MBAdobe PDFZobrazit/otevřít
posudky-odp-kunkel.pdfPosudek oponenta práce1,1 MBAdobe PDFZobrazit/otevřít
protokol-odp-kunkel-stag.pdfPrůběh obhajoby práce515,29 kBAdobe PDFZobrazit/otevřít


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