DocumentCode
132444
Title
A dual-active-bridge based bi-directional micro-inverter with integrated short-term Li-Ion ultra-capacitor storage and active power smoothing for modular PV systems
Author
Poshtkouhi, Shahab ; Fard, Miad ; Hussein, H. ; Dos Santos, Lucas Marcelino ; Trescases, Olivier ; Varlan, Mihai ; Lipan, Tudor
Author_Institution
Univ. of Toronto, Toronto, ON, Canada
fYear
2014
fDate
16-20 March 2014
Firstpage
643
Lastpage
649
Abstract
This work targets modular nanogrids for remote locations, where photovoltaic modules can be gradually introduced to grow the renewable energy capacity at minimal capital cost, while reducing diesel fuel consumption. Today´s grid-tied micro-inverters provide a modular solution for ac power generation in nanogrids but battery storage remains centralized, requiring an additional ac-dc converter. The main contribution of this work is a new micro-inverter platform and control scheme with bidirectional power flow between the nanogrid, the photovoltaic module and integrated short-term storage, using new high energy-density Lithium-Ion Capacitor technology. A real-time power smoothing algorithm is also proposed and the performance of the new 100 W micro-inverter is experimentally verified under various closed-loop dynamic conditions.
Keywords
AC-DC power convertors; closed loop systems; distributed power generation; invertors; load flow control; photovoltaic power systems; supercapacitors; Li; ac power generation; ac-dc converter; active power smoothing; bi-directional microinverter; bidirectional power flow; closed-loop dynamic conditions; control scheme; diesel fuel consumption; dual active bridge; grid-tied microinverters; high energy-density; integrated short-term Li-ion ultra-capacitor storage; lithium-ion capacitor technology; minimal capital cost; modular PV systems; modular nanogrids; photovoltaic modules; power 100 W; real-time power smoothing; remote locations; renewable energy capacity; Batteries; Bidirectional control; Capacitors; Generators; Inductance; Power smoothing; System-on-chip;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Power Electronics Conference and Exposition (APEC), 2014 Twenty-Ninth Annual IEEE
Conference_Location
Fort Worth, TX
Type
conf
DOI
10.1109/APEC.2014.6803376
Filename
6803376
Link To Document