Precision Measurement of Rotor Angle of a Microsynchronous Alternator

International journal IEEE Transactions on Instrumentation and Measurement Volume 39 No6 Pg:1045 - 1047

Bewaard in:
Bibliografische gegevens
Hoofdauteur: Omoigui, Michael
Formaat: Tijdschrift
Taal:Engels
Gepubliceerd in: IEEE Xplore 2020
Onderwerpen:
Online toegang:https://ir.oauife.edu.ng/handle/123456789/5080
Tags: Voeg label toe
Geen labels, Wees de eerste die dit record labelt!
_version_ 1810764568457117696
author Omoigui, Michael
author_facet Omoigui, Michael
author_sort Omoigui, Michael
collection DSpace
description International journal IEEE Transactions on Instrumentation and Measurement Volume 39 No6 Pg:1045 - 1047
format Journal
id oai:ir.oauife.edu.ng:123456789-5080
institution My University
language English
publishDate 2020
publisher IEEE Xplore
record_format dspace
spelling oai:ir.oauife.edu.ng:123456789-50802020-01-19T12:27:23Z Precision Measurement of Rotor Angle of a Microsynchronous Alternator Omoigui, Michael A precision instrument laboratory microalternator measurement International journal IEEE Transactions on Instrumentation and Measurement Volume 39 No6 Pg:1045 - 1047 A precision instrument used for the measurement of rotor angles of a laboratory microalternator is described. The measurement is performed by integrating digital signals derived from a phase-locked loop (PLL) reference (i.e. laboratory infinite busbar or the terminals of another machine in a multimachine system) and an optical encoder mounted on the shaft of the machine. The integration is executed by synchronous up-down binary counters. A 12-b digital-analog converter enables both transient and dynamic movement of the rotor to be displayed on an oscilloscope or other suitable recorder. When used on a four-pole 3-MVA microalternator, the resolution of the encoder is 0.2 electrical degrees. Relatively slow and fractional movements of the rotor angle arising from dynamic power imbalances as well as fast and large rotor excursions arising from severe transient disturbances, which sometimes result in pole slipping, are reliably and precisely recorded. It is possible to obtain constant information on the stability or lack thereof for the machine under every operating condition. With appropriate transducers, the principle may easily be applied to continuously monitor changes in the rotor angle of large alternators in interconnected power systems 2020-01-19T12:27:18Z 2020-01-19T12:27:18Z 1991 Journal DOI: 10.1109/19.65823 https://ir.oauife.edu.ng/handle/123456789/5080 en text/plain IEEE Xplore
spellingShingle A precision instrument
laboratory microalternator
measurement
Omoigui, Michael
Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title_full Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title_fullStr Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title_full_unstemmed Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title_short Precision Measurement of Rotor Angle of a Microsynchronous Alternator
title_sort precision measurement of rotor angle of a microsynchronous alternator
topic A precision instrument
laboratory microalternator
measurement
url https://ir.oauife.edu.ng/handle/123456789/5080
work_keys_str_mv AT omoiguimichael precisionmeasurementofrotorangleofamicrosynchronousalternator