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Built-in reliability design of a high-frequency SiC MOSFET power module (2014)
Presentation / Conference Contribution
Li, J., Gurpinar, E., Lopez Arevalo, S., Castellazzi, A., & Mills, L. Built-in reliability design of a high-frequency SiC MOSFET power module. Presented at 7th International Power Electronics Conference (IPEC Hiroshima 2014 ECCE- ASIA)

A high frequency SiC MOSFET-based three-phase, 2-level power module has been designed, simulated, assembled and tested. The design followed a built-in reliability approach, involving extensive finite-element simulation based analysis of the electro-t... Read More about Built-in reliability design of a high-frequency SiC MOSFET power module.

Testing of a lightweight SiC power module for avionic applications (2014)
Presentation / Conference Contribution
Gurpinar, E., Lopez Arevalo, S., Li, J., De, D., Castellazzi, A., & Mills, L. Testing of a lightweight SiC power module for avionic applications. Presented at 7th IET International Conference on Power Electronics, Machines and Drives (PEMD 2014)

Functional and performance tests of a three-phase, two-level power module based on CREE 1.2kV SiC MOSFETs for avionic applications is presented in this paper. SiC devices have superior properties over conventional Si devices at high voltage operation... Read More about Testing of a lightweight SiC power module for avionic applications.

Intelligent impedance based fault-location for zonal power systems (2014)
Presentation / Conference Contribution
Rose, C. J., Thomas, D. W., Sumner, M., Christopher, E., & Lopez Arevalo, S. Intelligent impedance based fault-location for zonal power systems. Presented at 12th IET International Conference on Developments in Power System Protection (DPSP 2014)

A laboratory based demonstrator has been constructed to study the Active Impedance Estimation (AIE) technique as a means of locating faults on a power system. The demonstrator has been used to verify results from simulation experimentally. The AIE sy... Read More about Intelligent impedance based fault-location for zonal power systems.