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High-voltage Gain DCDC Boost Converter
with Coupled Inductors and Interleaved for a PV System to Supply
Data Centers
K. L. Santos and F. L. M. Antunes
2017/04/25
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Abstrac
This study presents the analysis and design
of a high-voltage gain dcdc converter applied to photovoltaic systems.
A Battery bank rated at 24 V is connected to the input side, and the converter
is responsible for stepping the voltage up to 311 V, in order to supply
a Data Center to be used at IFRNs Campus Verde (Federal Institute
of Rio Grande do Nortes Green Campus), where there is already a
photovoltaic plant connected to the AC bus. The idea of a direct current
supply is to improve the quality of energy delivered to such loads. This
study proposes a converter topology with interleaved operation between
two boost converters with coupled inductor and duplicity of the exit module
to improve the ripple of the output voltage and reduce the high voltage
on the output diode of converter, respectively. The Interleaved topology
between two converters with a lag of the 180o promotes the reduction of
output voltage ripple as well as filter elements, since it allows the
load to receive the double of switching frequency, and doubles the total
output power of the circuit. The interleaving concept reduces input current
ripple and the input inductance size. In addition, the dimensioning voltage
is not output voltage but capacitor voltage, which is lower than output
voltage, reducing costs.
| Published in: Renewable Energy
& Power Quality Journal (RE&PQJ, Nº. 15) |
| Pages: 411-416 |
Date of Publication: 2017/04/25 |
| ISSN: 2172-038X |
Date of Current Version: |
| REF: 336-17 |
Issue Date: April 2017 |
| DOI:10.24084/repqj15.336 |
Publisher: EA4EPQ |
Authors and affiliations
K. L. Santos(1,2) and F. L. M. Antunes(2)
1. Federal Institute of Education, Science and Technology of Rio Grande
do Norte. (Brazil).
2. Department of Electrical Engineering. Federal University of Ceará,
Fortaleza, Ceará (Brazil),
Key word
Boost, Coupled-Inductor, Data Center, Interleaved, Quality
of Energy.
References
[1] A. Pratt, P. Kumar e T. V. Aldridge, Evaluation
of 400V DC Distribution in Telco and, em IEEE, 2007.
[2] M. Salato, A. Zolj, D. J. Becker e B. J. Sonnenberg, Power System
Architectures for 380 DC Distribution in Telecom Data centers, em
IEEE, 2012.
[3] A. A. A. Freitas, F. L. Tofoli, E. M. Sá Júnior, S.
Daher e F. L. M. Antunes, High-voltage gain dcdc boost converter
with coupled inductors for photovoltaic systems, IET Power Electronics,
vol. 8, nº 10, p. 18851892, 10 04 2015.
[4] F. S. F. SILVA, Photovoltaic System for Lighting and Supply
of Small Equipment in Continuous Current, UFC, Fortaleza, 2010.
[5] K. Kajangpan e B. Neammanee, High Gain Double Interleave Technique
with Maximum Peak Power Tracking for Wind Turbine Converter, 978-1-4244-3388-9/09/$25.00
©2009 IEEE, 2009.

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