Power adaptor device for domestic DC microgrids based on commercial MPPT inverters
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hdl:2117/19722
Tipus de documentArticle
Data publicació2013
EditorInstitute of Electrical and Electronics Engineers (IEEE)
Condicions d'accésAccés restringit per política de l'editorial
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continguts d'aquesta obra estan subjectes a la llicència de Creative Commons
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Reconeixement-NoComercial-SenseObraDerivada 3.0 Espanya
Abstract
This paper presents a power adaptor device, referred
to as smart panel device, allowing the connection of additional
energy sources and storage elements to a domestic photovoltaic
(PV) grid-connected system. The adaptor output port is designed
to behave as a power source/sink, thus enabling its hot-swap
parallel connection to renewable power sources without modifying
their maximum power point (MPP). Moreover, the adaptor device
features a power characteristic with a single controllable MPP and
allows the control of the injected power within the operating range
of the dc–ac grid-connected inverter. The work presents the design
principles of such device by describing the operation of a sliding-
mode controlled quadratic-boost converter. The proper operation
of the device is experimentally verified for several scenarios in
a small PV-based microgrid system including a fuel-cell stack, a
1-kW three-phase wind turbine, a battery charger–discharger, and
commercial grid-connected PV inverters
CitacióValderrama, H. [et al.]. Power adaptor device for domestic DC microgrids based on commercial MPPT inverters. "IEEE transactions on industrial electronics", 2013, vol. 60, núm. 3, p. 1191-1203.
ISSN0278-0046
Versió de l'editorhttp://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=06196222
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Power Adaptor D ... Domestic DC Microgrids.pdf | Power Adaptor Device for Domestic DC Microgrids | 1,792Mb | Accés restringit |