Probability risk assessment of island operation event for large scale photovoltaic plant

Original methodology for the calculation of island operation event occurrence possibility is proposed for the photovoltaic power plants connected to medium voltage grid. Within the methodology description, event fault tree with number of pairs of basic initial events is discussed, where probability...

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Main Authors: Mihovil Ivas, Ante Marusic, Juraj Havelka, Tomislav Capuder
Format: Article
Language:English
Published: Taylor & Francis Group 2019-04-01
Series:Automatika
Subjects:
Online Access:http://dx.doi.org/10.1080/00051144.2019.1591071
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spelling doaj-3a56ca21629d463fbe99825b8d8e8ef42020-11-25T00:50:35ZengTaylor & Francis GroupAutomatika0005-11441848-33802019-04-0160218119210.1080/00051144.2019.15910711591071Probability risk assessment of island operation event for large scale photovoltaic plantMihovil Ivas0Ante Marusic1Juraj Havelka2Tomislav Capuder3Power Transmission and Distribution, Lahmeyer international GmbHUniversity of ZagrebUniversity of ZagrebUniversity of ZagrebOriginal methodology for the calculation of island operation event occurrence possibility is proposed for the photovoltaic power plants connected to medium voltage grid. Within the methodology description, event fault tree with number of pairs of basic initial events is discussed, where probability for the basic events are defined and flow chart for the proposed calculation is given. The novelty in the approach for probability calculation includes also proposal for development of frequency distribution functions for concerned power generation and consumption variables which have to be modelled for the probability calculations, for which the triangular distributions curves have been chosen. Being boundary conditions for definition of non-detected island event, borders of non-detection zones are defined for the common island detection protection functions: over frequency and under frequency, over voltage and under voltage and rate of change of frequency functions. Comparison of the island event probability is presented on case study example, with conclusion that standard voltage and frequency protection alone are not satisfying, but ROCOF protection could be suitable, subject to particular local grid characteristic and calculative verification of probability.http://dx.doi.org/10.1080/00051144.2019.1591071Photovoltaic plantisland operationprobability risk assessmentmedium voltageloss of mains protection
collection DOAJ
language English
format Article
sources DOAJ
author Mihovil Ivas
Ante Marusic
Juraj Havelka
Tomislav Capuder
spellingShingle Mihovil Ivas
Ante Marusic
Juraj Havelka
Tomislav Capuder
Probability risk assessment of island operation event for large scale photovoltaic plant
Automatika
Photovoltaic plant
island operation
probability risk assessment
medium voltage
loss of mains protection
author_facet Mihovil Ivas
Ante Marusic
Juraj Havelka
Tomislav Capuder
author_sort Mihovil Ivas
title Probability risk assessment of island operation event for large scale photovoltaic plant
title_short Probability risk assessment of island operation event for large scale photovoltaic plant
title_full Probability risk assessment of island operation event for large scale photovoltaic plant
title_fullStr Probability risk assessment of island operation event for large scale photovoltaic plant
title_full_unstemmed Probability risk assessment of island operation event for large scale photovoltaic plant
title_sort probability risk assessment of island operation event for large scale photovoltaic plant
publisher Taylor & Francis Group
series Automatika
issn 0005-1144
1848-3380
publishDate 2019-04-01
description Original methodology for the calculation of island operation event occurrence possibility is proposed for the photovoltaic power plants connected to medium voltage grid. Within the methodology description, event fault tree with number of pairs of basic initial events is discussed, where probability for the basic events are defined and flow chart for the proposed calculation is given. The novelty in the approach for probability calculation includes also proposal for development of frequency distribution functions for concerned power generation and consumption variables which have to be modelled for the probability calculations, for which the triangular distributions curves have been chosen. Being boundary conditions for definition of non-detected island event, borders of non-detection zones are defined for the common island detection protection functions: over frequency and under frequency, over voltage and under voltage and rate of change of frequency functions. Comparison of the island event probability is presented on case study example, with conclusion that standard voltage and frequency protection alone are not satisfying, but ROCOF protection could be suitable, subject to particular local grid characteristic and calculative verification of probability.
topic Photovoltaic plant
island operation
probability risk assessment
medium voltage
loss of mains protection
url http://dx.doi.org/10.1080/00051144.2019.1591071
work_keys_str_mv AT mihovilivas probabilityriskassessmentofislandoperationeventforlargescalephotovoltaicplant
AT antemarusic probabilityriskassessmentofislandoperationeventforlargescalephotovoltaicplant
AT jurajhavelka probabilityriskassessmentofislandoperationeventforlargescalephotovoltaicplant
AT tomislavcapuder probabilityriskassessmentofislandoperationeventforlargescalephotovoltaicplant
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