DocumentCode
1945444
Title
Advanced photovoltaic inverter functionality verification using 500kw power hardware-in-loop (PHIL) complete system laboratory testing
Author
Mather, B.A. ; Kromer, M.A. ; Casey, L.
Author_Institution
Distrib. Energy Syst. Integration (DESI) Group, Nat. Renewable Energy Lab. (NREL), Golden, CO, USA
fYear
2013
fDate
24-27 Feb. 2013
Firstpage
1
Lastpage
6
Abstract
With the increasing penetration of distribution connected photovoltaic (PV) systems, more and more PV developers and utilities are interested in easing future PV interconnection concerns by mitigating some of the impacts of PV integration using advanced PV inverter controls and functions. This paper describes the testing of a 500kW PV inverter using Power Hardware-in-Loop (PHIL) testing techniques. The test setup is described and the results from testing the inverter in advanced functionality modes, not commonly used in currently interconnected PV systems, are presented. PV inverter operation under PHIL evaluation that emulated both the DC PV array connection and the AC distribution level grid connection are shown for constant power factor (PF) and constant reactive power (VAr) control modes. The evaluation of these modes was completed under varying degrees of modeled PV variability.
Keywords
control engineering computing; distributed power generation; invertors; photovoltaic power systems; power distribution control; power factor; power generation control; power grids; power system interconnection; power system simulation; power utilisation; reactive power control; AC distribution level grid connection; DC PV array connection; PF; PHIL evaluation; PV integration impact; VAr; advanced PV inverter control; advanced photovoltaic inverter functionality verification; constant power factor; constant reactive power control mode; distribution connected photovoltaic system; interconnected PV system; power 500 kW; power hardware-in-loop complete system laboratory testing technique; Arrays; Integrated circuit interconnections; Integrated circuit modeling; Inverters; Reactive power; Real-time systems; Testing; Power hardware-in-loop (PHIL); advanced PV inverter functionality; high power photovoltaic (PV) inverter testing; power factor control; reactive power control;
fLanguage
English
Publisher
ieee
Conference_Titel
Innovative Smart Grid Technologies (ISGT), 2013 IEEE PES
Conference_Location
Washington, DC
Print_ISBN
978-1-4673-4894-2
Electronic_ISBN
978-1-4673-4895-9
Type
conf
DOI
10.1109/ISGT.2013.6497862
Filename
6497862
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