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The impact of single-phase grid-connected distributed photovoltaic systems on the distribution network using P-Q and P-V models
Affiliation:1. Department of Electrical and Computer Engineering, Isfahan University of Technology, Isfahan 84156-83111, Iran;2. Department of Electrical Engineering, Amirkabir University of Technology (Tehran Polytechnic), Power System Excellence, Tehran 15914, Iran;3. School of Electrical, Electronic, and Comms. Engineering, University College Dublin, Dublin D04V1W8, Ireland;1. School of Electrical Engineering and Computer Science, Queensland University of Technology, Brisbane 4000, Australia;2. Department of Electrical, Electronic and Computer Engineering, University of Pretoria, South Africa
Abstract:The gradual emergence of photovoltaic (PV) systems as the most common distributed generation interconnected with the electric power system calls for a detailed power flow analysis with different models especially in the evolving unbalanced active distribution network. This paper is an extension of a previous study carried out on the performance evaluation of a 10 kWp grid-connected PV system deployed in a school, with the grid providing a virtual storage and access to upstream markets. For increased adoption of such systems in the unbalanced distribution network, it is pivotal to understand the mode of operation and the type of connection to the system. This article presents an impact analysis of such utility interactive single-phase PV systems distributed on all the single-phase load nodes of the traditional IEEE-13 bus distribution test feeder. The PV distributed generation (PV-DG) can be modelled as constant P-Q or P-V nodes with varied impacts in power flow studies for the unbalanced active distribution network. Results from these models are compared in terms of their impacts on voltage profiles at load buses, voltage unbalance, equipment loading, power losses and the total number of iterations for a converged power flow solution.
Keywords:Photovoltaic  Grid-connected  Voltage unbalance  Equipment loading
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