Works matching DE "CAPACITOR switching"
Results: 818
Practical Measurement of Automatic Power Factor Detection and Correction Using Smart Arduino in Three-Phase Distribution Networks.
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- Instrumentation, Mesures, Métrologies, 2025, v. 24, n. 1, p. 1, doi. 10.18280/i2m.240101
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A Highly Stabilized Current Source Topology with Slope Compensation for a High-Power Microwave Guiding Coil.
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- Electronics (2079-9292), 2025, v. 14, n. 4, p. 739, doi. 10.3390/electronics14040739
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Comparative analysis and control design of two non-isolated DC–DC converters with high reduction ratio.
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- Electrical Engineering, 2025, v. 107, n. 2, p. 2329, doi. 10.1007/s00202-024-02642-y
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Implementation of a novel nine-level double boosting multi-level inverter.
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- Electrical Engineering, 2025, v. 107, n. 2, p. 1763, doi. 10.1007/s00202-024-02597-0
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A novel nine‐level inverter, applicable in air plane ground power unit.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 11, p. 1457, doi. 10.1049/pel2.12712
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Extended high gain DC‐DC converter with switched‐inductors, switched‐capacitors and soft‐switching: Analysis and implementation.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 11, p. 1445, doi. 10.1049/pel2.12711
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Reconfigurable high step‐up DC to DC converter for microgrid applications.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 9, p. 1023, doi. 10.1049/pel2.12557
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A high step‐up high step‐down coupled inductor based bidirectional DC–DC converter with low voltage stress on switches.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 7, p. 802, doi. 10.1049/pel2.12694
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Very high step‐down coupled inductor two‐phase buck converter with single magnetic element and inherent clamp voltage capability.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 5, p. 640, doi. 10.1049/pel2.12678
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An interleaved high step‐up DC–DC converter based on coupled‐inductor.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 3, p. 473, doi. 10.1049/pel2.12662
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A novel bidirectional DC–DC converter with high voltage conversion ratio and capability of cancelling input current ripple.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 3, p. 375, doi. 10.1049/pel2.12649
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Quasi‐Z‐source inverter with switched‐coupled‐capacitors.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 1, p. 134, doi. 10.1049/pel2.12627
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- Article
A selection principle of submodule switching state vectors for switching frequency reduction in voltage self‐balancing half‐bridge modular multilevel converters.
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- IET Power Electronics (Wiley-Blackwell), 2024, v. 17, n. 1, p. 25, doi. 10.1049/pel2.12606
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Design and implementation of isolated multilevel inverter with lower number of circuit devices.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 16, p. 2792, doi. 10.1049/pel2.12579
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- Article
An extendable step‐up/down DC–DC converter based on switched capacitors.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 13, p. 2138, doi. 10.1049/pel2.12534
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A hybrid control strategy for dynamic compensation of cross‐coupling effect in two‐load IPT system.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 12, p. 1943, doi. 10.1049/pel2.12513
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High step‐up quasi‐Z‐source converter with full soft switching range, continuous input current and low auxiliary elements.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 11, p. 1902, doi. 10.1049/pel2.12511
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New cascaded multilevel inverter with series connection of novel capacitor based basic units.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 11, p. 1796, doi. 10.1049/pel2.12502
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A high step‐up DC–DC converter with switched‐capacitor and switched‐inductor using one coupled inductor.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 9, p. 1514, doi. 10.1049/pel2.12491
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Performance analysis and control of a novel 7‐level active neutral point clamped (ANPC) topology.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1255, doi. 10.1049/pel2.12466
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Comprehensive analysis and design of a switched‐inductor type low inductance‐requirement DC‐DC buck‐boost converter for low power applications.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1239, doi. 10.1049/pel2.12465
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Single‐switch coupled‐inductors‐based high step‐up converter with reduced voltage stress.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1227, doi. 10.1049/pel2.12464
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A capacitor voltage self‐balancing method of modular multilevel converters based on switching state matrix construction.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1181, doi. 10.1049/pel2.12461
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Fully soft switched high step‐up/down bidirectional buck/boost converter with reduced switch voltage stress.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1146, doi. 10.1049/pel2.12457
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A novel high‐efficient step‐up converter with continuous input current, common ground, and minimum stress on semiconductors.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 7, p. 1128, doi. 10.1049/pel2.12455
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Retuning high Q inductive power transfer systems at MHz frequencies: a switched capacitor design method incorporating C<sub>OSS</sub>.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 6, p. 975, doi. 10.1049/pel2.12444
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Single‐phase common ground type 5L inverter with reduced capacitor voltage stress for photovoltaic applications.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 5, p. 883, doi. 10.1049/pel2.12434
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A new high step‐up DC power supply with modular switched capacitor cells.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 5, p. 777, doi. 10.1049/pel2.12422
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An improved four‐layer capacitor voltage control strategy combined with arm current control for transformerless modular multilevel converters.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 5, p. 762, doi. 10.1049/pel2.12421
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Single source self‐balanced switched‐capacitor multilevel inverter with reduced number of semiconductors.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 4, p. 575, doi. 10.1049/pel2.12409
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Investigation on the optimal operation and control strategy of a wide‐range switched‐capacitor/switched‐inductor DC/DC converter.
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- IET Power Electronics (Wiley-Blackwell), 2023, v. 16, n. 2, p. 227, doi. 10.1049/pel2.12378
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A new layered bidirectional equalizer based on a novel resonant voltage balance converter for the battery voltage active equalization of energy storage system.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 16, p. 1877, doi. 10.1049/pel2.12355
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Double‐layer equalizer with multi‐winding transformer and resonance switched capacitor module for series‐connected batteries.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 12, p. 1217, doi. 10.1049/pel2.12303
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Analysis and design for constant current/constant voltage multi‐coil wireless power transfer system with high EMF reduction.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 12, p. 1144, doi. 10.1049/pel2.12298
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Ultra high gain step up DC/DC converter based on switched inductor and improved voltage lift technique for high‐voltage applications.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 10, p. 932, doi. 10.1049/pel2.12279
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A simplified sliding‐mode control method for multi‐level transformerless DVR.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 8, p. 764, doi. 10.1049/pel2.12266
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- Article
Unbalanced power control of a modular multilevel converter with photovoltaic resources and the capacitor voltage ripple analysis.
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- IET Power Electronics (Wiley-Blackwell), 2022, v. 15, n. 8, p. 701, doi. 10.1049/pel2.12260
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An interleaved high step‐up DC–DC converter with ZVS capability for renewable energy systems applications.
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- IET Power Electronics (Wiley-Blackwell), 2021, v. 14, n. 15, p. 2478, doi. 10.1049/pel2.12195
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Comprehensive review of single stage switched boost inverter structures.
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- IET Power Electronics (Wiley-Blackwell), 2021, v. 14, n. 12, p. 2031, doi. 10.1049/pel2.12166
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An interleaved ZVS ultra‐large gain converter for sustainable energy systems applications.
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- IET Power Electronics (Wiley-Blackwell), 2021, v. 14, n. 9, p. 1606, doi. 10.1049/pel2.12136
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- Article
Switched capacitor-based continuous input current high step-up impedance source DC–DC converter.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 18, p. 4204, doi. 10.1049/iet-pel.2020.0862
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- Article
Voltage source boost multilevel inverter with high modularity: circuit configuration and modulation.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 18, p. 4336, doi. 10.1049/iet-pel.2020.0711
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Hybrid cascaded high step-up DC/DC converter with continuous input current for renewable energy applications.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 15, p. 3487, doi. 10.1049/iet-pel.2020.0544
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Reduced switch count-based N-level boost inverter topology for higher voltage gain.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 15, p. 3505, doi. 10.1049/iet-pel.2020.0359
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Resilient multilevel inverter topology with improved reliability.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 15, p. 3384, doi. 10.1049/iet-pel.2020.0158
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- Article
A topology of coupled inductor DC–DC converter with large conversion ratio and reduced voltage stress on semiconductors.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 15, p. 3339, doi. 10.1049/iet-pel.2019.1360
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Asymmetric cascade multilevel inverter with self-balanced switched-capacitor unit and single source.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 15, p. 3254, doi. 10.1049/iet-pel.2019.1098
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Novel high gain DC–DC converter based on coupled inductor and diode capacitor techniques with leakage inductance effects.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 11, p. 2380, doi. 10.1049/iet-pel.2020.0117
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Five-level one-capacitor boost multilevel inverter.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 11, p. 2245, doi. 10.1049/iet-pel.2020.0033
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- Article
Partly isolated three-port DC–DC converter based on impedance network.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 11, p. 2175, doi. 10.1049/iet-pel.2019.1348
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- Article