A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions

Partial shading conditions of photovoltaic (PV) modules often occurs in urban areas leading to losses in electricity power generation of the PV power plant. The purpose of this study is to present how the PV power plant with high value of inverter power sizing factor (<i>K</i><sub>...

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Main Authors: Zoltan Corba, Bane Popadic, Dragan Milicevic, Boris Dumnic, Vladimir A. Katic
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/18/4810
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spelling doaj-f1cb03ba713a45908d78e213b9d3868d2020-11-25T03:35:50ZengMDPI AGEnergies1996-10732020-09-01134810481010.3390/en13184810A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading ConditionsZoltan Corba0Bane Popadic1Dragan Milicevic2Boris Dumnic3Vladimir A. Katic4Faculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, SerbiaFaculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, SerbiaFaculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, SerbiaFaculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, SerbiaFaculty of Technical Sciences, University of Novi Sad, 21000 Novi Sad, SerbiaPartial shading conditions of photovoltaic (PV) modules often occurs in urban areas leading to losses in electricity power generation of the PV power plant. The purpose of this study is to present how the PV power plant with high value of inverter power sizing factor (<i>K</i><sub>inv</sub>) can achieve high performance and power production under partial shading conditions with high shading losses. In this paper the results of long-term monitoring, performance analysis and experimental results are presented, while the results are compared to the estimated values calculated using PVsyst software. The study focused on the PV power plant at the Faculty of Technical Sciences (FTS) in Novi Sad, Republic of Serbia, for the period between the years 2012 and 2019. It has been shown that the values of PV power plant performance parameters are better than expected (very high), and resemble the power plants operating without shading. The high value of the inverter power sizing factor may lead to occasional saturation of the inverter when certain conditions are met, but most of the times it allows the inverter to operate at a more optimal power level. PV module soiling and power degradation is within the limits mentioned in the literature. The increase in <i>K</i><sub>inv</sub> in the partial shading conditions favorably affects the performance, does not degrade the efficiency of the inverter at saturation, reduces the effect of soiling and aging of PV modules, leading to higher power production.https://www.mdpi.com/1996-1073/13/18/4810partial shading conditioninverter power sizing factorperformance analysissoilingpower degradation
collection DOAJ
language English
format Article
sources DOAJ
author Zoltan Corba
Bane Popadic
Dragan Milicevic
Boris Dumnic
Vladimir A. Katic
spellingShingle Zoltan Corba
Bane Popadic
Dragan Milicevic
Boris Dumnic
Vladimir A. Katic
A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
Energies
partial shading condition
inverter power sizing factor
performance analysis
soiling
power degradation
author_facet Zoltan Corba
Bane Popadic
Dragan Milicevic
Boris Dumnic
Vladimir A. Katic
author_sort Zoltan Corba
title A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
title_short A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
title_full A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
title_fullStr A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
title_full_unstemmed A Long-Term Condition Monitoring and Performance Assessment of Grid Connected PV Power Plant with High Power Sizing Factor under Partial Shading Conditions
title_sort long-term condition monitoring and performance assessment of grid connected pv power plant with high power sizing factor under partial shading conditions
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-09-01
description Partial shading conditions of photovoltaic (PV) modules often occurs in urban areas leading to losses in electricity power generation of the PV power plant. The purpose of this study is to present how the PV power plant with high value of inverter power sizing factor (<i>K</i><sub>inv</sub>) can achieve high performance and power production under partial shading conditions with high shading losses. In this paper the results of long-term monitoring, performance analysis and experimental results are presented, while the results are compared to the estimated values calculated using PVsyst software. The study focused on the PV power plant at the Faculty of Technical Sciences (FTS) in Novi Sad, Republic of Serbia, for the period between the years 2012 and 2019. It has been shown that the values of PV power plant performance parameters are better than expected (very high), and resemble the power plants operating without shading. The high value of the inverter power sizing factor may lead to occasional saturation of the inverter when certain conditions are met, but most of the times it allows the inverter to operate at a more optimal power level. PV module soiling and power degradation is within the limits mentioned in the literature. The increase in <i>K</i><sub>inv</sub> in the partial shading conditions favorably affects the performance, does not degrade the efficiency of the inverter at saturation, reduces the effect of soiling and aging of PV modules, leading to higher power production.
topic partial shading condition
inverter power sizing factor
performance analysis
soiling
power degradation
url https://www.mdpi.com/1996-1073/13/18/4810
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