مشروع البحث:
Optimization of Nonstandard Tripping Protection Scheme for Radial and Meshed Power Networks with Distributed Generation Systems

dc.contributor.advisorDr. Yanting
dc.contributor.advisorDr. John Council
dc.date.accessioned2026-05-20T07:38:12Z
dc.date.available2026-05-20T07:38:12Z
dc.descriptionthis thesis presents a novel optimal OCR coordination scheme developed using the non-standard current characteristics (NSTCCs) approach. This approach is specifically designed to adjust OCRs. The proposed equation is contingent on a variable dynamic coefficient based on a logarithmic function curve for improving the flexibility of the curve, thus the optimal coordination between OCRs has been obtained throughout different fault modes.
dc.description.abstractThe operation of modern distribution networks (DNs) tackles serious challenges due to the integration of distributed generations (DGs). The protection scheme is one of these challenges. Particularly, the occurrence of bi-directional short-circuit current flow that affects the reliability, sensitivity and selectivity of traditional overcurrent relays (OCRs). In addition, the future distribution system with DGs is expected that will be occupied by the meshed networks alongside the classical radial design and alternating between the grid-connected and islanded mode, for enhancing their reliability.
dc.identifier1132
dc.identifier.urihttps://dspace.academy.edu.ly/handle/123456789/2071
dc.subjectRadial and Meshed Power Networks
dc.titleOptimization of Nonstandard Tripping Protection Scheme for Radial and Meshed Power Networks with Distributed Generation Systems
dspace.entity.typeProject
project.endDate2023
project.funder.nameالهندسة الكهربائية والاكترونية
project.investigatorسليمة عبيد
project.startDate2022
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