Energies (Jan 2020)

Fault Analysis and Design of a Protection System for a Mesh Power System with a Co-Axial HTS Power Cable

  • Thai-Thanh Nguyen,
  • Woon-Gyu Lee,
  • Hak-Man Kim,
  • Hyung Suk Yang

DOI
https://doi.org/10.3390/en13010220
Journal volume & issue
Vol. 13, no. 1
p. 220

Abstract

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The uses of high-temperature superconducting (HTS) cables pose a challenge of power system protection since the impedance of the HTS cable is varied during fault conditions. The protection systems should be designed properly to ensure the reliability and stability of the whole system. This paper presents a fault analysis of the co-axial HTS cable in the mesh system and proposes a coordinated protection system. In the proposed protection system, the main protection is the differential current relay whereas the backup protections are the overcurrent and directional overcurrent relays. The normal and abnormal relay operations are considered to analyze the transient fault current in the HTS cable and evaluate the performance of the proposed coordinated protection system. Characteristics of cable impedances and temperatures under various fault conditions are presented. The proposed protection scheme is validated by the simulation in the PSCAD/EMTDC program. Simulation results show that the coordinated protection scheme could successfully protect the HTS cables in both normal and abnormal relay operations.

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