hosseinzadeh-loadpatternbased-2020.pdf (1.78 MB)
Download fileLoad pattern-based voltage stability analysis in unbalanced distribution networks considering maximum penetration level of distributed generation
journal contribution
posted on 2020-01-01, 00:00 authored by M Kazeminejad, M Banejad, U D Annakkage, Nasser HosseinzadehStability analysis in the power system is becoming more important than ever as more distributed energy resources penetrate in the system. This study presents a novel load pattern voltage stability index (LPVSI) applicable to transmission and distribution systems. By considering the nominal value of voltages, the power network is converted into a two-bus equivalent system. Then, LPVSI is derived by only the real-time measurement of the voltage and deviation of active and reactive power loads. Also, the assessment of distributed generation's penetration level on unbalanced systems, with maximum loadability and power loss reduction constraints, is performed with regard to daily load variations. The accuracy and efficiency of the proposed indicator are tested on an unbalanced 34-node radial distribution system. Obtained results in comparison with some other papers in the literature demonstrate that the proposed voltage stability index is fast and effective in identifying non-trivial instabilities in the power system networks.
History
Journal
IET Renewable Power GenerationVolume
14Issue
13Pagination
2517 - 2525Publisher
Institution of Engineering and TechnologyLocation
Stevenage, Eng.Publisher DOI
ISSN
1752-1416eISSN
1752-1424Language
engPublication classification
C1 Refereed article in a scholarly journalUsage metrics
Categories
No categories selectedKeywords
Science & TechnologyTechnologyGreen & Sustainable Science & TechnologyEnergy & FuelsEngineering, Electrical & ElectronicScience & Technology - Other TopicsEngineeringdistribution networkspower system stabilityload flowdistributed power generationreactive powerdistribution systemspower networktwo-bus equivalent systemLPVSIactive power loadsreactive power loadsdistributed generationunbalanced systemsmaximum loadabilitypower loss reduction constraints34-node radial distribution systempower system networksload pattern-based voltage stability analysisunbalanced distribution networksmaximum penetration leveldistributed energy resourcesload pattern voltage stability indexDISTRIBUTION-SYSTEMINDEXIMPROVEMENTCOLLAPSELOSSESMARGIN