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AC source vs DC source: Charging efficiency in battery storage systems for residential houses., , , , и . ISGT Asia, стр. 1-6. IEEE, (2017)Back-to-back MOSFET switches to reduce the losses in SCALDO implementation., , и . ICIT, стр. 54-59. IEEE, (2017)Comparison of Step-Down Charge Pump Converters and Supercapacitor-Assisted Low- Dropout (SCALDO) Regulators., , и . TENCON, стр. 299-304. IEEE, (2021)Mitigation of residual flux for high-temperature superconductor (HTS) transformer by controlled switching of HTS breaker arc model., , , и . ISGT Asia, стр. 1-6. IEEE, (2017)Efficiency enhanced linear DC-DC converter topology with integrated DC-UPS capability., , и . ICIT, стр. 712-717. IEEE, (2018)Supercapacitor based RC loop loss circumvention technique to improve the efficiency of photovoltaic inverters., , и . ICIT, стр. 1151-1156. IEEE, (2020)Extending the Supercapacitor-Assisted Low-Dropout Regulator (SCALDO) Technique to a Split-Rail DC-DC Converter Application., , , и . IEEE Access, (2019)A Dynamic Control Methodology for DC Fault Ride Through of Modular Multilevel Converter based High Voltage Direct Current Systems., , и . Comput. Electr. Eng., (2022)Circuit Protection Techniques for Supercapacitor-Assisted Low-Dropout (SCALDO) Regulator., , и . TENCON, стр. 851-856. IEEE, (2021)Arc Absorption Options Based on Passive Components in DC Circuit Breakers., , , , и . IECON, стр. 1-6. IEEE, (2023)