1999IEEE Power Engineering Society. 1999 Winter Meeting (Cat. No.99CH36233)Requires access

Fault location of two-parallel transmission line for non-earth fault using one-terminal data

Qingchao Zhang, Yao Zhang, Song Wennan, Yixin Yu, Zhigang Wang

Open publisher page 5 citations

Abstract

Summary form only as given. An accurate fault-location algorithm for the two-parallel transmission line of a direct ground neutral system is presented. The algorithm employs the faulted circuit and healthy circuit of a two-parallel line as fault-location model, in which remote source impedance is not involved. It effectively eliminates the effect of load flow and fault resistance on the accuracy of fault location. It embodies an accurate location by measuring only one local end data and it is used in a procedure that provides the automatic determination of fault types and phases, rather than require an engineer to specify them. Simulation results have shown the effectiveness of the algorithm under the conditions of nonearth faults (phase-to-phase fault and three-phase fault with and without earth-connection).

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What this paper is about

Summary form only as given. An accurate fault-location algorithm for the two-parallel transmission line of a direct ground neutral system is presented. The algorithm employs the faulted circuit and healthy circuit of a two-parallel line as fault-location model, in which remote source impedance is not involved. It effectively eliminates the effect of load flow and fault resistance on the accuracy of fault location. It embodies an accurate location by measuring only one local end data and it is used in a procedure that provides the automatic determination of fault types and phases, rather than require an engineer to specify them. Simulation results have shown the effectiveness of the algorithm under the conditions of nonearth faults (phase-to-phase fault and three-phase fault with and without earth-connection).

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Available abstract

Summary form only as given. An accurate fault-location algorithm for the two-parallel transmission line of a direct ground neutral system is presented. The algorithm employs the faulted circuit and healthy circuit of a two-parallel line as fault-location model, in which remote source impedance is not involved. It effectively eliminates the effect of load flow and fault resistance on the accuracy of fault location. It embodies an accurate location by measuring only one local end data and it is used in a procedure that provides the automatic determination of fault types and phases, rather than require an engineer to specify them. Simulation results have shown the effectiveness of the algorithm under the conditions of nonearth faults (phase-to-phase fault and three-phase fault with and without earth-connection).

Key concepts: Fault (geology), Fault indicator, Stuck-at fault, Line (geometry), Computer science, Transmission line, Terminal (telecommunication), Fault coverage

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