Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters

Photovoltaic (PV) systems composed by two energy conversion stages are attractive from an operation point of view. This is because the maximum power point tracking (MPPT) range is extended, due to the voltage decoupling between the PV system and the dc-link. Nevertheless, the additional dc-dc conver...

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Main Authors: Jaime Wladimir Zapata, Samir Kouro, Gonzalo Carrasco, Thierry A. Meynard
Format: Article
Language:English
Published: MDPI AG 2019-01-01
Series:Electronics
Subjects:
Online Access:http://www.mdpi.com/2079-9292/8/1/87
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spelling doaj-73e354f152e74d5781971b555552f49f2020-11-25T00:53:07ZengMDPI AGElectronics2079-92922019-01-01818710.3390/electronics8010087electronics8010087Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String InvertersJaime Wladimir Zapata0Samir Kouro1Gonzalo Carrasco2Thierry A. Meynard3Laboratoire Plasma et Conversion d’Énergie, ENSEEIHT, 31071 Toulouse CEDEX 7, FranceElectronics Engineering Department, Universidad Tecnica Federico Santa Maria, Valparaiso 2390123, ChileElectronics Engineering Department, Universidad Tecnica Federico Santa Maria, Valparaiso 2390123, ChileLaboratoire Plasma et Conversion d’Énergie, ENSEEIHT, 31071 Toulouse CEDEX 7, FrancePhotovoltaic (PV) systems composed by two energy conversion stages are attractive from an operation point of view. This is because the maximum power point tracking (MPPT) range is extended, due to the voltage decoupling between the PV system and the dc-link. Nevertheless, the additional dc-dc conversion stage increases the volume, cost and power converter losses. Therefore, central inverters based on a single-stage converter, have been a mainstream solution to interface large-scale PV arrays composed of several strings connected in parallel made by the series connections of PV modules. The concept of partial power converters (PPC), previously reported as a voltage step-up stage, has not addressed in depth for all types of PV applications. In this work, a PPC performing voltage step-down operation is proposed and analyzed. This concept is interesting from the industry point of view, since with the new isolation standards of PV modules are reaching 1500 V, increasing both the size of the string and dc-link voltage for single-stage inverters. Since grid connection remains typically at 690 V, larger strings impose more demanding operation for single-stage central inverters (required to operate at lower modulation indexes and demand higher blocking voltage devices), making the proposed step-down PPC an attractive solution. Theoretical analysis and an experimental test-bench was built in order to validate the PPC concept, the control performance and the improvement of the conversion efficiency. The experimental results corroborate the benefits of using a PPC, in terms of increasing the system efficiency by reducing the processed power of the converter, while not affecting the system performance.http://www.mdpi.com/2079-9292/8/1/87Dc–dc convertersstring inverterpartial power convertersphotovoltaic energy
collection DOAJ
language English
format Article
sources DOAJ
author Jaime Wladimir Zapata
Samir Kouro
Gonzalo Carrasco
Thierry A. Meynard
spellingShingle Jaime Wladimir Zapata
Samir Kouro
Gonzalo Carrasco
Thierry A. Meynard
Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
Electronics
Dc–dc converters
string inverter
partial power converters
photovoltaic energy
author_facet Jaime Wladimir Zapata
Samir Kouro
Gonzalo Carrasco
Thierry A. Meynard
author_sort Jaime Wladimir Zapata
title Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
title_short Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
title_full Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
title_fullStr Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
title_full_unstemmed Step-Down Partial Power DC-DC Converters for Two-Stage Photovoltaic String Inverters
title_sort step-down partial power dc-dc converters for two-stage photovoltaic string inverters
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2019-01-01
description Photovoltaic (PV) systems composed by two energy conversion stages are attractive from an operation point of view. This is because the maximum power point tracking (MPPT) range is extended, due to the voltage decoupling between the PV system and the dc-link. Nevertheless, the additional dc-dc conversion stage increases the volume, cost and power converter losses. Therefore, central inverters based on a single-stage converter, have been a mainstream solution to interface large-scale PV arrays composed of several strings connected in parallel made by the series connections of PV modules. The concept of partial power converters (PPC), previously reported as a voltage step-up stage, has not addressed in depth for all types of PV applications. In this work, a PPC performing voltage step-down operation is proposed and analyzed. This concept is interesting from the industry point of view, since with the new isolation standards of PV modules are reaching 1500 V, increasing both the size of the string and dc-link voltage for single-stage inverters. Since grid connection remains typically at 690 V, larger strings impose more demanding operation for single-stage central inverters (required to operate at lower modulation indexes and demand higher blocking voltage devices), making the proposed step-down PPC an attractive solution. Theoretical analysis and an experimental test-bench was built in order to validate the PPC concept, the control performance and the improvement of the conversion efficiency. The experimental results corroborate the benefits of using a PPC, in terms of increasing the system efficiency by reducing the processed power of the converter, while not affecting the system performance.
topic Dc–dc converters
string inverter
partial power converters
photovoltaic energy
url http://www.mdpi.com/2079-9292/8/1/87
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