FCCee CPES

Cryogenic Power Supply for Use in Cryo‐Cooled HTS Magnet Systems

Host institutionETHZ
Principal InvestigatorProf. Dr. Johann W. Kolar
ProgrammeCHART 2021–2024
Publications4

In cryogen-free HTS magnet systems, the high-current, large-cross-section copper conductors connecting the magnet coils to a power supply outside the cryostat create a thermal leakage path and high conduction losses, which drive up the energy consumption of the cryocoolers. The project develops a cryogenic power supply that delivers power through the cryostat's heat shield at higher voltage — thinner wires, lower heat conduction — by performing the power-electronic conversion to the low-voltage, high-current supply the HTS magnets need inside the cryostat. The aim is a converter with minimum losses, and with it a clearly higher overall energy efficiency.

Timeline

20222024
Component prequalification2023
Top. Eval.2023
Prerliminary Demonstrator2023
Final Demonstrator2024

Collaborating institutions

CHART partners
  • PSI
  • ETH Zurich

Project team

  • Prof. Dr Johann W. KolarPrincipal InvestigatorETH Zurich
  • Dr Jonas HuberDeputy PIETH Zurich

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