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AuthorAl-Emadi, Nasser A.
AuthorGhorbani, Amir
AuthorMehrjerdi, Hasan
Available date2021-06-07T09:59:13Z
Publication Date2016
Publication NameIET Generation, Transmission and Distribution
ResourceScopus
URIhttp://dx.doi.org/10.1049/iet-gtd.2016.0223
URIhttp://hdl.handle.net/10576/20522
AbstractThe distance protection of multi-terminal transmission lines need to be redesigned due to possible changes in the backup protection emanating from probable infeed currents produced from tapped transmission lines. Furthermore, high-resistance fault is another factor that relay become under-reach and cannot correctly identify the fault. In this study, an algorithm is presented based on synchrophasors. In this method, voltage and current signals of buses will be sent to system protection centre (SPC) and in SPC an algorithm based on active power calculation in buses is provided that is able to eliminate the effects of both mentioned factors. In this method, measurement or relay in tapped transmission line location are not required. The study includes analytical analysis and modelling and in modelling results a variety of faults with different fault resistances is considered. Two power systems including teed-feeder system and IEEE 14-bus power system are considered. The results show that in both power systems, and different types of faults, backup distance protection is improved. Simulations are conducted by Electro-Magnetic Transient Program works.
Languageen
PublisherInstitution of Engineering and Technology
SubjectElectric lines
Materials handling equipment
Phasor measurement units
Analytical analysis
Back-up protections
Distance protection
Electromagnetic transient program
Fault resistances
High resistance faults
Multiterminal transmission line
System protection
Electric power system protection
TitleSynchrophasor-based backup distance protection of multi-terminal transmission lines
TypeArticle
Pagination3304-3313
Issue Number13
Volume Number10


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