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Showing 1 to 5 of 5 for “"medium voltage converter"”.

  1. On the Design of a High-Power Medium-Voltage Converter for Transportation Applications

    … applications, the size and weight of power converters and associated cabling is of paramount importance, as this bulk contributes to the "overhead" that must be carried about by the transportation system. Thus, improvements to the power density of such systems, as well as the possibility of …

    alabama Repository record for On the Design of a High-Power Medium-Voltage Converter for Transportation Applications (opens in a new tab)

  2. High-frequency Current-transformer Based Auxiliary Power Supply for SiC-based Medium Voltage Converter Systems

    … gate drivers, sensors, controllers, etc. in medium voltage (MV) silicon carbide (SiC)-based converter systems. Such a converter requires APS to have high insulation capability, low common-mode coupling capacitance (Ccm ), and high-power density. Furthermore, considering the lifetime and …

    vt Repository record for High-frequency Current-transformer Based Auxiliary Power Supply for SiC-based Medium Voltage Converter Systems (opens in a new tab)

  3. Device Voltage Balancing from Device-level to Converter-level in High Power Density Medium Voltage Converter using 10 kV SiC MOSFETs

    … Power electronics systems which can provide medium-voltage (MV) to high-voltage (HV) output (>13.8 kV ac, > 20 kV dc) with much faster dynamic response (> 10 kHz bandwidth) or high switching-frequency will enable new electronic energy network architectures, like MVDC power delivery, …

    vt Repository record for Device Voltage Balancing from Device-level to Converter-level in High Power Density Medium Voltage Converter using 10 kV SiC MOSFETs (opens in a new tab)

  4. High-Frequency Design Consideration and EMI Mitigation in SiC-based Multilevel Converters

    Medium Voltage (MV) power conversion systems are essential in high power applications to address the increasing demand of energy and the increasing penetration of renewable energy sources. MV power electronics converters are the key elements for power conversion in MV systems and are the focus of …

    vt Repository record for High-Frequency Design Consideration and EMI Mitigation in SiC-based Multilevel Converters (opens in a new tab)

  5. Insulation Design, Assessment and Monitoring Methods to Eliminate Partial Discharge in SiC-based Medium Voltage Converters

    In comparison with Si-based converters, the emerging Medium Voltage (MV) SiC-based converters can achieve higher blocking voltage capability, lower on-resistance, faster switching speed with less switching related losses and run under higher temperature. Thus, theoretically, it can achieve much …

    vt Repository record for Insulation Design, Assessment and Monitoring Methods to Eliminate Partial Discharge in SiC-based Medium Voltage Converters (opens in a new tab)