DocumentCode
88006
Title
Flexible Synchronized Measurement Technology-Based Fault Locator
Author
Terzija, Vladimir ; Radojevic, Zoran M. ; Preston, Gary
Author_Institution
Sch. of Electr. & Electron. Eng., Univ. of Manchester, Manchester, UK
Volume
6
Issue
2
fYear
2015
fDate
Mar-15
Firstpage
866
Lastpage
873
Abstract
This paper presents a flexible and robust numerical algorithm for fault location on transmission lines. The algorithm does not require line parameters to locate the fault, which is an advance over fault locators that do require such information. Line parameters are only approximately constant; they vary with different loading and weather conditions, which affects the accuracy of existing fault location algorithms. Thus, an approach which does not require line parameters would be more robust, accurate, and flexible. Accurately, locating faults on transmission lines is vital for expediting their repair, so the proposed solution could lead to an improvement in the security and quality of the energy supply. Development of the proposed algorithm was facilitated by new smart grid technologies in the field of wide-area monitoring, protection, and control. The proposed algorithm is based on emerging synchronized measurement technology, using synchronized data sampling at both line terminals; however, the “SynchroCheck” procedure is also proposed as a means of accurately locating faults when data sampling synchronization has been lost. This paper presents the algorithm derivation and the results of thorough testing using alternative transients program-electromagnetic transients program (ATP-EMTP) fault simulations.
Keywords
fault location; power overhead lines; power supply quality; power system measurement; power transmission faults; smart power grids; ATP-EMTP fault simulations; SynchroCheck procedure; alternative transients program; data sampling synchronization; electromagnetic transients program; energy supply quality; fault location algorithms; fault locator; flexible synchronized measurement technology; robust numerical algorithm; smart grid technology; transmission line fault location; wide-area monitoring; Algorithm design and analysis; Circuit faults; Fault location; Phasor measurement units; Power transmission lines; Synchronization; Transmission line measurements; Fault location; overhead lines; protection; settings-free; synchronized sampling; two-terminal algorithms;
fLanguage
English
Journal_Title
Smart Grid, IEEE Transactions on
Publisher
ieee
ISSN
1949-3053
Type
jour
DOI
10.1109/TSG.2014.2367820
Filename
6982199
Link To Document