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AuthorGhorbani, Amir
AuthorSanaye-Pasand, Majid
AuthorMehrjerdi, Hasan
Available date2022-11-14T10:49:08Z
Publication Date2021
Publication NameElectric Power Systems Research
ResourceScopus
Resource2-s2.0-85099169396
URIhttp://dx.doi.org/10.1016/j.epsr.2021.107021
URIhttp://hdl.handle.net/10576/36307
AbstractThe accelerated operation of distance relay is an important issue to improve the power system stability. The zone-1 of distance relay usually covers about 80% of the transmission line length with an instantaneous operation, while during resistive faults the coverage of zone-1 may be reduced considerably. Therefore, the conventional distance relay cannot cover the whole line length with fast fault clearance. To address the above problem, a non-pilot protection scheme based on the accurate fault location estimation is proposed. When a fault occurs at the end section of the line, after the fast remote circuit breaker (RCB) operation, the accurate amount of fault current can be obtained. Using this current, the accurate fault location is calculated, and as a result, the accelerated trip can be issued to the local circuit breaker (CB) for the faults occurring at all the total line length including the end section faults. The obtained fault location formula is independent of the fault resistance and remote source impedances and can be applied to both single- and three-pole CB operation modes. The proposed high-speed protection scheme is evaluated in the WSCC 9-bus system. Numerous PSCAD simulation studies verify the effectiveness and applicability of the proposed scheme. 2021
SponsorThis work was supported by the National Priorities Research Program under Grant 11S-1125-170027 from the Qatar National Research Fund (a member of Qatar Foundation). The authors would like to sincerely thank Mr. Habib Panahi for his help and comments.
Languageen
PublisherElsevier
SubjectAccelerated tripping
Distance relay
Fault location
Non-pilot protection scheme
Remote CB operation (RCB)
TitleAccelerated distance protection for transmission lines based on accurate fault location
TypeArticle
Volume Number193
dc.accessType Abstract Only


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