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handle: 11380/1237539 , 11585/801878
This paper focuses on the inception of partial discharges within the insulation system of electrical actuators used for the More Electrical Aircraft (MEA). Since these machines should operate in the absence of Partial Discharges (PDs), the dependence of the PD Inception Voltage (PDIV) on voltage impulses typical of wide bandgap (SiC) devices is investigated at both 1 bar, reduced pressures close to those typical of aircraft cruising altitudes (150 mbar - 200 mbar) or lower (down to 5 mbar). Propagation issues are not dealt with here as results were obtained working on insulation models consisting of couples of wires twisted together (twisted pairs), thus knowing exactly the potential differences between all points of the insulation model. The results show that the rise times and the switching frequencies associated with wide bandgap devices have little impact on the PDIV. A model able to predict the PDIV of the turn/turn insulation of random wound motors (the most vulnerable part of the insulation) at different pressures is proposed. The model is also able to deal with temperature changes, with limitations that depend on the type on insulation systems.
Partial discharges, more electrical aircraft, MEA, wide bandgap devices, SiC inverter, qualification, MEA, H2020, more electrical aircraft, MEA; more electrical aircraft; Partial discharges; qualification; SiC inverter; wide bandgap devices, wide bandgap devices, TK1-9971, RAISE, Partial discharges, Clean Sky 2 JU, SiC inverter, Electrical engineering. Electronics. Nuclear engineering, qualification
Partial discharges, more electrical aircraft, MEA, wide bandgap devices, SiC inverter, qualification, MEA, H2020, more electrical aircraft, MEA; more electrical aircraft; Partial discharges; qualification; SiC inverter; wide bandgap devices, wide bandgap devices, TK1-9971, RAISE, Partial discharges, Clean Sky 2 JU, SiC inverter, Electrical engineering. Electronics. Nuclear engineering, qualification
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