Please use this identifier to cite or link to this item: https://etd.cput.ac.za/handle/20.500.11838/2805
Title: Analysis of the effect of renewable generation on the power quality of the grid, modelling and analysis of harmonic and voltage distortion
Authors: Musoni, Nkusi Emmanuel 
Keywords: Renewable energy sources;Renewable resource integration;Electric power systems;Smart power grids;Energy development
Issue Date: 2018
Publisher: Cape Peninsula University of Technology
Abstract: As the electric energy demand grows, there is a significant increase in the penetration of renewable generation (RG) in the existing electrical grid network. Interconnecting of renewable generation technologies to an existing distribution system has proven to provide various benefits such as meeting the growing load demand and its contribution to energy system decarbonisation, long-term energy security and expansion of energy access to new energy consumers in the developing urban and rural areas. However, the aim of this thesis is to conduct a study on the impacts of renewable generation on the power quality of electrical grid. Therefore, this work aims at assessing the potential effects of Distributed Generation (DG) on the operation of electric power system by modelling of harmonics and voltage distortion. With different types of renewable generation available at present, it is believed that some designs contribute significantly to electrical network’s Power Quality (PQ). After the analysis of harmonic currents (chapter 6 and 7 of this thesis) introduced by renewable generation technologies, their negative impact on the power quality of the grid is seen to be apparent at point of connection (POC) but only within controlled limits. Analytical method for modeling of harmonic interactions between the grid and aggregated distributed generation technologies are investigated using DIgSILENT Power Factory software and the results obtained are discussed.
Description: Thesis (MEng (Electrical Engineering))--Cape Peninsula University of Technology, 2018.
URI: http://hdl.handle.net/20.500.11838/2805
Appears in Collections:Electrical, Electronic and Computer Engineering - Master's Degree

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