DocumentCode :
1515139
Title :
Generator Emulation Controls for Photovoltaic Inverters
Author :
Alatrash, Hussam ; Mensah, Adje ; Mark, Evlyn ; Haddad, Ghaith ; Enslin, Johan
Author_Institution :
Petra Solar Inc., South Plainfield, NJ, USA
Volume :
3
Issue :
2
fYear :
2012
fDate :
6/1/2012 12:00:00 AM
Firstpage :
996
Lastpage :
1011
Abstract :
The grid faces a number of challenges related to large-scale integration of intermittent distributed generation (DG) such as photovoltaics (PV). Power quality challenges include voltage regulation issues, flicker, and frequency volatility. Operational challenges include the need for extension of the command-and-control infrastructure to millions of devices anticipated on the low-voltage (service) side of the distribution network. This paper presents an advanced grid-tied inverter controls concept designed to address such challenges. This controls concept is based on reproducing favorable characteristics of traditional generators that result in load-following tendencies, and is accordingly dubbed Generator Emulation Controls (GEC). Traditional generators are analyzed with specific focus on such favorable characteristics as inertial dynamics and controlled impedance. Details of GEC are then presented, and its implementation is outlined based on the evolution of conventional grid-tied inverter controls. This is followed by an examination of the system impact of GEC-operated devices. GEC allows DG inverters to perform voltage regulation support, reactive power compensation, and fault ride-through. GEC also allows DG inverters to form scalable inverter-based microgrids, capable of operating in grid-tied mode or separating and supporting an islanded load. Simulation results are presented to examine the impact on voltage regulation and power losses across a distribution feeder. Two experimental test beds are used to demonstrate voltage regulation support, transient suppression, and microgridding capabilities.
Keywords :
invertors; large scale integration; photovoltaic power systems; power generation control; DG inverters; command-and-control infrastructure; fault ride-through; frequency volatility; generator emulation controls; grid faces; grid-tied inverter controls; intermittent distributed generation; large-scale integration; microgridding capabilities; photovoltaic inverters; reactive power compensation; transient suppression; voltage regulation support; Emulation; Impedance; Inverters; Rotors; Synchronous generators; Voltage control; Distributed power generation; inverters; photovoltaic systems; smart grids;
fLanguage :
English
Journal_Title :
Smart Grid, IEEE Transactions on
Publisher :
ieee
ISSN :
1949-3053
Type :
jour
DOI :
10.1109/TSG.2012.2188916
Filename :
6198747
Link To Document :
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