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      Analysis of the operation of PV strings at the MPP closest to the nominal MPP voltage instead of the global MPP based on measured current–voltage curves

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          Abstract

          Under non-uniform operating conditions, photovoltaic (PV) generators may have several maximum power points (MPP) and voltage of the global MPP (GMPP) may vary quickly over a wide voltage range which may cause problems for tracking of the GMPP. Since highly varying GMPP voltage causes fluctuation of the inverter reference voltage, it would be beneficial to operate the PV system in a more predictable and straightforward manner by keeping the operating point of the inverter all the time close to the nominal MPP voltage. This article presents an experimental study of a scenario in which the MPP closest to the nominal MPP voltage (CMPP) is always the operating point instead of the GMPP. The analysis was based on 1,296,000 measured current–voltage curves of three different PV strings located at Tampere, Finland. 12 days of full-time measurements were analysed for each of the studied strings consisting of 6, 17 and 23 series-connected NAPS NP190GK PV modules. Furthermore, the effects of inverter sizing on the operating point behaviour of the strings were studied. The results show that the wide operating voltage range of the GMPP can be significantly reduced by operating at the CMPP at a cost of negligible energy losses. Energy losses due to power curtailment were much larger than energy losses due to operation at the CMPP instead of the GMPP.

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          Mitigating methods of power fluctuation of photovoltaic (PV) sources – A review

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            Comprehensive overview of maximum power point tracking algorithms of PV systems under partial shading condition

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              Global MPPT Scheme for Photovoltaic String Inverters Based on Restricted Voltage Window Search Algorithm

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                Author and article information

                Journal
                epjpv
                https://www.epj-pv.org
                EPJ Photovoltaics
                EPJ Photovolt.
                EDP Sciences
                2105-0716
                20 January 2022
                20 January 2022
                2022
                : 13
                : ( publisher-idID: epjpv/2022/01 )
                : 4
                Affiliations
                Tampere University, Electrical Engineering Unit, P.O. Box 692, , 33101 Tampere, Finland,
                Author notes
                Author information
                https://orcid.org/0000-0003-3559-6927
                Article
                pv210024
                10.1051/epjpv/2022001
                cc5c0f0e-4c44-4ef6-a7ca-9b2e905bcc3d
                © K. Lappalainen and S. Valkealahti, Published by EDP Sciences, 2022

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 28 June 2021
                : 29 November 2021
                : 3 January 2022
                Page count
                Figures: 12, Tables: 5, Equations: 0, References: 25, Pages: 10
                Categories
                EU PVSEC 2021: State of the Art and Developments in Photovoltaics
                Regular Article
                Custom metadata
                EPJ Photovoltaics 13, 4 (2022)
                yes
                2022
                2022
                2022

                Sustainable & Green chemistry,Materials technology,Semiconductors,Materials for energy,Technical & Applied physics,Renewable energy
                power variation,operating voltage,Photovoltaic power generation,inverter sizing,maximum power point

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