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dc.contributor.advisorHardi, Surya
dc.contributor.authorSimbolon, Rapael
dc.date.accessioned2025-04-25T07:42:30Z
dc.date.available2025-04-25T07:42:30Z
dc.date.issued2024
dc.identifier.urihttps://repositori.usu.ac.id/handle/123456789/103433
dc.description.abstractIn the process of distributing electrical power, there are often faults that cause power outages. One of them is an overcurrent fault caused by a 1-phase, 2-phase, or 3-phase short circuit. These faults can cause large currents to flow in electrical equipment exceeding its nominal current so that it can be damaged. To overcome this problem, a protection relay in the form of an overcurrent relay (OCR) is needed. In this research dual setting directional overcurrent relay (DS - DOCR) is used to simulate short circuit current protection in IEEE 9 bus network connected to distributed generation. To obtain optimum coordination, the TMS (DS - DOCR) settings are optimized with the dual simplex method . Based on simulation results, the use of DS DOCR can protect the network from short circuit faults well and coordinated after optimization. The operating time after optimization in 1-phase and 3-phase short circuit tests is reduced by 8.34% and 16.9% respectively.en_US
dc.language.isoiden_US
dc.publisherUniversitas Sumatera Utaraen_US
dc.subjectDual Setting-Directional Overcurrent Relay(DS-DOCR)en_US
dc.subjectDistributed Generationen_US
dc.subjectDual Simplexen_US
dc.titleKoordinasi Optimum Dual Setting Directional Overcurrent Relay Menggunakan Metode Dual Simplex pada Jaringan IEEE 9 Bus Terhubung Distributed Generationen_US
dc.title.alternativeOptimum Coordination of Dual Setting Directional Overcurrent Relay Using Dual Simplex Method on Distributed Generation Connected IEEE 9 Bus Networksen_US
dc.typeThesisen_US
dc.identifier.nimNIM190402038
dc.identifier.nidnNIDN0007065905
dc.identifier.kodeprodiKODEPRODI20201#Teknik Elektro
dc.description.pages78 Pagesen_US
dc.description.typeSkripsi Sarjanaen_US
dc.subject.sdgsSDGs 9. Industry Innovation And Infrastructureen_US


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