DocumentCode
3408889
Title
Behavior Matching as fundamental feature to obtain a modified dual-stage inverter
Author
Casaro, Marcio Mendes ; Martins, Denizar Cruz
Author_Institution
Power Electron. Inst., Fed. Univ. of Santa Catarina, Florianopolis
fYear
2008
fDate
June 30 2008-July 2 2008
Firstpage
2426
Lastpage
2431
Abstract
This paper presents a PV grid-connected system in centralized configuration and constructed with a three-phase dual-stage inverter. In this topology, usually, a DC-DC converter performs the maximum power point tracking (MPPT) and an inverter is responsible for controlling of the grid-current. For the DC-DC stage the three-phase series resonant converter (SRC3) is chosen thanks to the very advantages that it exhibit. However, it is inadequate for the accomplishment of MPPT, due that its efficiency extremely depends on the implemented deadtime and switching frequency. Then, this paper proposes a conceptual modification, i.e., a dual-stage inverter in which the inverter stage is responsible for the MPPT and the grid-current control. In addition, the DC-DC converter operates with constant duty cycle and frequency. Such configuration requires a new concept, introduced as behavior matching. It serves as fundamental feature for the DC-DC converter to reproduce the PV array I-V characteristic when they are connected, without control action. The maximum power operating point (MPOP) is finding maximizing the direct axis current, obtained by Parkpsilas transformation from the inverter, through the perturbation and observation algorithm (P&O). Any specific measurement to MPPT is made. The isolation is performed by a high-frequency transformer becoming the system most compact. The structure is appropriate for high power applications, above 10 kW.
Keywords
DC-DC power convertors; invertors; photovoltaic power systems; power grids; DC-DC converter; PV grid-connected system; behavior matching; maximum power operating point; maximum power point tracking; modified dual-stage inverter; three-phase dual-stage inverter; three-phase series resonant converter; topology; DC-DC power converters; Distributed power generation; Frequency conversion; Inverters; Photovoltaic systems; Power electronics; Resonance; Solar power generation; Switching frequency; Topology;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 2008. ISIE 2008. IEEE International Symposium on
Conference_Location
Cambridge
Print_ISBN
978-1-4244-1665-3
Electronic_ISBN
978-1-4244-1666-0
Type
conf
DOI
10.1109/ISIE.2008.4676951
Filename
4676951
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