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LOAD FLOW MODEL FOR DROOP-CONTROLLED ELECTRIC SYSTEMS: CASE OF MICROGRIDS

Title: LOAD FLOW MODEL FOR DROOP-CONTROLLED ELECTRIC SYSTEMS: CASE OF MICROGRIDS
Authors: Meridji, Tayeb
Publication Year: 2016
Collection: Spectrum: Concordia University Research Repository (Montreal)
Description: Microgrids are independent micro electric systems made up of locally controlled systems that can function both connected to the main grid (on-grid mode) or isolated from the main grid (off-grid or islanded mode). CIGRE defines Microgrids as “electricity distribution systems containing loads and distributed energy resources, (such as distributed generators, storage devices, or controllable loads) that can be operated in a controlled, coordinated way either while connected to the main power network or while islanded.” As described by the IEEE Standards Coordinating Committee, microgrids have the ability to: (1) improve electrical reliability for customers; (2) relieve electric power system overload problems, in particular for highly congested power systems; and (3) resolve power quality issues. Most of the advantages offered by microgrids heavily rely on their predisposition to operate in isolated, independent mode. However, microgrids in islanded mode present technical operating challenges that need to be thoroughly investigated. A microgrid must be able to independently meet the active and reactive power requirements of its assigned loads. In addition, it must also actively regulate voltage and frequency within a safe operating range in order to ensure system stability. Investigating the technical challenges of islanded microgrids requires appropriate modeling tools. As is the case for high voltage (HV) power systems, the reliability of an isolated microgrid starts with a thorough investigation of its behaviour under various steady-state conditions and a derivation of the steady-state voltage profiles and transmission line loading levels throughout the system. The present thesis investigates the steady-state analysis of islanded microgrid systems. To that end, an algorithm is developed using MATLAB to solve positive sequence (i.e., balanced) load-flow problems associated with isolated microgrids (IMGs). The proposed algorithm takes into account the specificities of IMGs and therefore yields more accurate results ...
Document Type: thesis
File Description: text
Language: English
Relation: https://spectrum.library.concordia.ca/id/eprint/981869/1/Meridji_MASc_F2016.pdf; Meridji, Tayeb (2016) LOAD FLOW MODEL FOR DROOP-CONTROLLED ELECTRIC SYSTEMS: CASE OF MICROGRIDS. Masters thesis, Concordia University.
Availability: https://spectrum.library.concordia.ca/id/eprint/981869/; https://spectrum.library.concordia.ca/id/eprint/981869/1/Meridji_MASc_F2016.pdf
Accession Number: edsbas.20F78ED4
Database: BASE