State estimation method development for SCADA and synchronized phasor measurements within power system

In  modern power systems, the special kind of measurement systems was actively implemented for the last 20 years. These measurement systems have a high-precision synchronized time stamp, which makes it possible to obtain, in addition to the effective value of line current and bus voltage, the electr...

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Main Authors: P. I. Bartolomey, S. I. Semenenko
Format: Article
Language:English
Published: Kazan State Power Engineering University 2019-06-01
Series:Известия высших учебных заведений: Проблемы энергетики
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Online Access:https://www.energyret.ru/jour/article/view/926
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author P. I. Bartolomey
S. I. Semenenko
author_facet P. I. Bartolomey
S. I. Semenenko
author_sort P. I. Bartolomey
collection DOAJ
description In  modern power systems, the special kind of measurement systems was actively implemented for the last 20 years. These measurement systems have a high-precision synchronized time stamp, which makes it possible to obtain, in addition to the effective value of line current and bus voltage, the electrical phase angles. In previous years, a large number of methods for obtaining a steady state based on telemetry (state estimation) have been formed, which are based on taking measurements of only the modules of these quantities, as well as the values of the active and reactive components of injection power in the nodes and flows in the branches. Most of these methods were based on the weighted least squares method, or other methods based on the maximum likelihood method, for which determination of the weighting factors of measurements, traditionally chosen on the basis of relative errors of these measurements, is required. However, there is the problem of taking measurements of electrical angles, for which the relative error is fundamentally indeterminable. There is also a problem associated with the integration of measurements of phasor measurements with traditional measurement tools into a single measuring system due to a significant difference in accuracy and update frequency. The paper proposes an approach for combining phasor measurements with traditional SCADA measurements in the framework of the state estimation procedure, taking into account the problems described.
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institution Kabale University
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publisher Kazan State Power Engineering University
record_format Article
series Известия высших учебных заведений: Проблемы энергетики
spelling doaj-art-1f0a71af8c484ae58349e74788a88b3a2024-11-26T11:39:39ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032019-06-01213-4687810.30724/1998-9903-2019-21-3-4-68-78576State estimation method development for SCADA and synchronized phasor measurements within power systemP. I. Bartolomey0S. I. Semenenko1Ural Federal University named after the first President of Russia B.N. YeltsinUral Federal University named after the first President of Russia B.N. YeltsinIn  modern power systems, the special kind of measurement systems was actively implemented for the last 20 years. These measurement systems have a high-precision synchronized time stamp, which makes it possible to obtain, in addition to the effective value of line current and bus voltage, the electrical phase angles. In previous years, a large number of methods for obtaining a steady state based on telemetry (state estimation) have been formed, which are based on taking measurements of only the modules of these quantities, as well as the values of the active and reactive components of injection power in the nodes and flows in the branches. Most of these methods were based on the weighted least squares method, or other methods based on the maximum likelihood method, for which determination of the weighting factors of measurements, traditionally chosen on the basis of relative errors of these measurements, is required. However, there is the problem of taking measurements of electrical angles, for which the relative error is fundamentally indeterminable. There is also a problem associated with the integration of measurements of phasor measurements with traditional measurement tools into a single measuring system due to a significant difference in accuracy and update frequency. The paper proposes an approach for combining phasor measurements with traditional SCADA measurements in the framework of the state estimation procedure, taking into account the problems described.https://www.energyret.ru/jour/article/view/926static state estimationsynchronized vector measurementsmaximum likelihood estimationchoice of weightslinear state estimation
spellingShingle P. I. Bartolomey
S. I. Semenenko
State estimation method development for SCADA and synchronized phasor measurements within power system
Известия высших учебных заведений: Проблемы энергетики
static state estimation
synchronized vector measurements
maximum likelihood estimation
choice of weights
linear state estimation
title State estimation method development for SCADA and synchronized phasor measurements within power system
title_full State estimation method development for SCADA and synchronized phasor measurements within power system
title_fullStr State estimation method development for SCADA and synchronized phasor measurements within power system
title_full_unstemmed State estimation method development for SCADA and synchronized phasor measurements within power system
title_short State estimation method development for SCADA and synchronized phasor measurements within power system
title_sort state estimation method development for scada and synchronized phasor measurements within power system
topic static state estimation
synchronized vector measurements
maximum likelihood estimation
choice of weights
linear state estimation
url https://www.energyret.ru/jour/article/view/926
work_keys_str_mv AT pibartolomey stateestimationmethoddevelopmentforscadaandsynchronizedphasormeasurementswithinpowersystem
AT sisemenenko stateestimationmethoddevelopmentforscadaandsynchronizedphasormeasurementswithinpowersystem