Analysis on air-gap magnetic flux of synchronous generator according to short-circuit types in winding

Duck Kweon Bae, Dong Hun Kim, Jung Shin Park, Dong Young Lee, Sung Lee

Research output: Contribution to journalArticlepeer-review

Abstract

As modern industrialized society progresses, the demand for electric power is increasing rapidly. The electric power system is getting amazingly bigger and complicated, which can easily induce serious troubles from the potential of large fault problems and/or system failure. The monitoring and diagnosis of the electric machine for the fault detection and protection has been important part in the electric power system. Most faults in the generator appear in the winding. This paper presents the air-gap magnetic flux characteristic of a small-scale 2-pole synchronous generator according to the faults in the field winding to protect the generator from the fault. The magnetic flux patterns in air-gap of a generator under various fault conditions as well as a normal state are simulated by using finite element method. These results are successfully applied to the detection and diagnosis of the short-circuit condition in rotor windings of a high capacitor generator.

Original languageEnglish
Pages (from-to)929-935
Number of pages7
JournalTransactions of the Korean Institute of Electrical Engineers
Volume58
Issue number5
StatePublished - May 2009

Keywords

  • Air-gap magnetic flux
  • Finite element method
  • Protecting method
  • Short-circuit
  • Synchronous generator

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