DocumentCode
3102874
Title
Power sharing among multiple solar photovoltaic (PV) systems in a radial distribution feeder
Author
Perera, Brian K. ; Ciufo, Philip ; Perera, Sarath
Author_Institution
Australian Power Quality & Reliability Centre, Univ. of Wollongong, Wollongong, SA, Australia
fYear
2013
fDate
Sept. 29 2013-Oct. 3 2013
Firstpage
1
Lastpage
6
Abstract
With an increasing penetration of solar photovoltaic (PV) systems, power distribution grids are becoming more susceptible to network voltage rise. As per applicable standards for grid-integrated PV systems, a PV system must be automatically disconnected from the grid when the terminal voltage of the PV system exceeds a defined maximum voltage. With this directive, in certain situations, PV systems connected at nodes at which the voltage sensitivity is high, may be disconnected from the grid while PV systems connected at less sensitive nodes are continuing to operate. In such a situation, owners whose PV systems are connected at nodes at which the voltage sensitivity is high, may loose their revenue. In order to minimise such a disadvantage, the current research proposes a power sharing methodology for PV systems that are connected to a radial distribution feeder by allocating a grid voltage bandwidth for each PV system to operate. The proposed method enables equal power sharing among multiple PV systems in situations where disconnection of PV systems may be necessary due to the presence of high voltages in the grid in the absence of such a power sharing methodology. Simulation results presented in this paper verifies the validity of the developed methodology.
Keywords
distributed power generation; distribution networks; load distribution; photovoltaic power systems; power grids; power system interconnection; grid integrated photovoltaic systems; multiple solar photovoltaic systems; network voltage rise; power distribution grid; power sharing methodology; radial distribution feeder; Artificial neural networks; Impedance; Reactive power; Sensitivity; Simulation; Steady-state; Voltage control; Photovoltaic systems; power sharing; voltage control; voltage sensitivity; voltage source converter;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Engineering Conference (AUPEC), 2013 Australasian Universities
Conference_Location
Hobart, TAS
Type
conf
DOI
10.1109/AUPEC.2013.6725345
Filename
6725345
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