Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications

Impedance-based stability assessment has been an important part of renewable integration. Modeling and measurement of impedance under Synchronized Reference Frame (SRF) is a common way for a portrait of the frequency-dependent impedance. In this paper, a modified current-source inverter (CSI) called...

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Main Authors: Peng Q., Migliazza G., Buticchi G., Guenter S., Tan N.M.L., Yang J., Wheeler P.
Other Authors: 57804706700
Format: Conference Paper
Published: Institute of Electrical and Electronics Engineers Inc. 2024
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spelling my.uniten.dspace-345882024-10-14T11:20:54Z Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications Peng Q. Migliazza G. Buticchi G. Guenter S. Tan N.M.L. Yang J. Wheeler P. 57804706700 57193015199 6507708268 56333447200 24537965000 57216421778 7101693838 current-source converter impedance photovoltaic stability analysis Electric impedance System stability Current source converters Current source inverter Impedance Modulars Output impedance Photovoltaic applications Photovoltaics Reference frame Stability analyze Three-phase currents Electric inverters Impedance-based stability assessment has been an important part of renewable integration. Modeling and measurement of impedance under Synchronized Reference Frame (SRF) is a common way for a portrait of the frequency-dependent impedance. In this paper, a modified current-source inverter (CSI) called CSI7 for photovoltaic (PV) integration is studied. The SRF admittance of the system under different solar irradiation from 400W/m2 to 1000W/m2 with a resolution of 100W/m2 is measured in PLECS simulation. It is found that large frequency-dependent admittance appears under the high-frequency zone of the q axis which could lead to harmonic instability problems. � 2023 IEEE. Final 2024-10-14T03:20:53Z 2024-10-14T03:20:53Z 2023 Conference Paper 10.1109/ICIT58465.2023.10143136 2-s2.0-85163407328 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163407328&doi=10.1109%2fICIT58465.2023.10143136&partnerID=40&md5=f7cde9f4df177313279b81efbdcbb3da https://irepository.uniten.edu.my/handle/123456789/34588 2023-April Institute of Electrical and Electronics Engineers Inc. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic current-source converter
impedance
photovoltaic
stability analysis
Electric impedance
System stability
Current source converters
Current source inverter
Impedance
Modulars
Output impedance
Photovoltaic applications
Photovoltaics
Reference frame
Stability analyze
Three-phase currents
Electric inverters
spellingShingle current-source converter
impedance
photovoltaic
stability analysis
Electric impedance
System stability
Current source converters
Current source inverter
Impedance
Modulars
Output impedance
Photovoltaic applications
Photovoltaics
Reference frame
Stability analyze
Three-phase currents
Electric inverters
Peng Q.
Migliazza G.
Buticchi G.
Guenter S.
Tan N.M.L.
Yang J.
Wheeler P.
Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
description Impedance-based stability assessment has been an important part of renewable integration. Modeling and measurement of impedance under Synchronized Reference Frame (SRF) is a common way for a portrait of the frequency-dependent impedance. In this paper, a modified current-source inverter (CSI) called CSI7 for photovoltaic (PV) integration is studied. The SRF admittance of the system under different solar irradiation from 400W/m2 to 1000W/m2 with a resolution of 100W/m2 is measured in PLECS simulation. It is found that large frequency-dependent admittance appears under the high-frequency zone of the q axis which could lead to harmonic instability problems. � 2023 IEEE.
author2 57804706700
author_facet 57804706700
Peng Q.
Migliazza G.
Buticchi G.
Guenter S.
Tan N.M.L.
Yang J.
Wheeler P.
format Conference Paper
author Peng Q.
Migliazza G.
Buticchi G.
Guenter S.
Tan N.M.L.
Yang J.
Wheeler P.
author_sort Peng Q.
title Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
title_short Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
title_full Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
title_fullStr Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
title_full_unstemmed Work in Progress: Output Impedance Specification of A Three-Phase Current-Source Inverter for Modular Photovoltaic Applications
title_sort work in progress: output impedance specification of a three-phase current-source inverter for modular photovoltaic applications
publisher Institute of Electrical and Electronics Engineers Inc.
publishDate 2024
_version_ 1814061062966738944
score 13.222552