Works matching DE "ELECTRIC power factor"
Results: 551
On Intensifying Carrier Impurity Scattering to Enhance Thermoelectric Performance in Cr-Doped Ce<sub>γ</sub>Co<sub>4</sub>Sb<sub>12</sub>.
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- Advanced Functional Materials, 2015, p. 6660, doi. 10.1002/adfm.201502782
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Thermoelectric measurements of PEDOT:PSS/expanded graphite composites.
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- Journal of Materials Science, 2013, v. 48, n. 7, p. 2855, doi. 10.1007/s10853-012-6846-8
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Fossil fuel–fired power plant operations under a changing climate.
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- Climatic Change, 2020, v. 163, n. 1, p. 619, doi. 10.1007/s10584-020-02834-y
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A dual‐input DC‐DC structure with high voltage gain suggested for hybrid energy systems.
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- IET Power Electronics (Wiley-Blackwell), 2021, v. 14, n. 10, p. 1792, doi. 10.1049/pel2.12149
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DSP-based comparison of PFC control techniques applied on bridgeless converter.
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- IET Power Electronics (Wiley-Blackwell), 2020, v. 13, n. 2, p. 317, doi. 10.1049/iet-pel.2018.5411
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Three-phase ripple free DCM boost converter with low THD.
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- IET Power Electronics (Wiley-Blackwell), 2019, v. 12, n. 1, p. 120, doi. 10.1049/iet-pel.2018.5284
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Modified zero-voltage-switching single-stage LED driver based on Class E converter with constant frequency control method.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 12, p. 1, doi. 10.1049/iet-pel.2018.5155
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Family of zero voltage transition interleaved converters with low voltage and current stress.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 12, p. 1, doi. 10.1049/iet-pel.2017.0656
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LC/CL compensation topology and efficiency-based optimisation method for wireless power transfer.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 6, p. 1029, doi. 10.1049/iet-pel.2017.0875
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Modelling, control and performance analysis of a single-stage single-phase inverter with reduced low-frequency input current ripple.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 6, p. 1074, doi. 10.1049/iet-pel.2017.0646
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Analysis and design of voltage-lift technique-based non-isolated boost dc-dc converter.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 6, p. 1083, doi. 10.1049/iet-pel.2017.0259
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Unity power factor three-phase AC-DC converter applying two switch DCM SEPIC converter with coupled inductors.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 5, p. 945, doi. 10.1049/iet-pel.2017.0720
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UPC strategy and implementation for buck- buck/boost PF correction converter.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 5, p. 884, doi. 10.1049/iet-pel.2016.0919
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Matrix pencil method-based reference current generation for shunt active power filters.
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- IET Power Electronics (Wiley-Blackwell), 2018, v. 11, n. 4, p. 772, doi. 10.1049/iet-pel.2017.0351
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Design and implementation of PFC Cuk converter fed SRM drive.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 12, p. 1539, doi. 10.1049/iet-pel.2016.1039
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Single-stage soft-switched PWM flyback power factor correction with reduced dead angle.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 12, p. 1422, doi. 10.1049/iet-pel.2016.0182
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Design and development of improved power quality based micro-butt welding power supply.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 7, p. 746, doi. 10.1049/iet-pel.2016.0372
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DSTATCOM employing hybrid neural network control technique for power quality improvement.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 4, p. 480, doi. 10.1049/iet-pel.2016.0556
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Single-stage QR AC-DC converter based on buck-boost and flyback circuits.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 1, p. 103, doi. 10.1049/iet-pel.2016.0264
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- Article
Single-stage electrolytic capacitor less non-inverting buck-boost PFC based AC-DC ripple free LED driver.
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- IET Power Electronics (Wiley-Blackwell), 2017, v. 10, n. 1, p. 38, doi. 10.1049/iet-pel.2015.0945
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- Article
Power quality improvement using bridgeless-Landsman converter for LED driver.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 13, p. 2591, doi. 10.1049/iet-pel.2015.1010
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Interleaved CSC converter-based power factor corrected switched mode power supply for arc welding.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 12, p. 2404, doi. 10.1049/iet-pel.2015.0510
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High-power-factor dimmable LED driver with low-frequency pulse-width modulation.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 10, p. 2139, doi. 10.1049/iet-pel.2015.0664
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Control method for improving the response of single-phase continuous conduction mode boost power factor correction converter.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 9, p. 1792, doi. 10.1049/iet-pel.2015.0914
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T-type direct AC/AC converter structure.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 7, p. 1426, doi. 10.1049/iet-pel.2015.0151
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Adaptive recursive inverse-based control algorithm for shunt active power filter.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 5, p. 1053, doi. 10.1049/iet-pel.2015.0170
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Repetitive control-based single-phase bidirectional rectifier with enhanced performance.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 5, p. 1029, doi. 10.1049/iet-pel.2015.0282
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Zero-voltage-transition bridgeless power factor correction rectifier with soft-switched auxiliary circuit.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 3, p. 546, doi. 10.1049/iet-pel.2014.0645
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Single-phase multi-level AC-DC power conversion interface.
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- IET Power Electronics (Wiley-Blackwell), 2016, v. 9, n. 3, p. 449, doi. 10.1049/iet-pel.2015.0143
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Modified Ćuk converter for high-performance power factor correction applications.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 10, p. 2058, doi. 10.1049/iet-pel.2014.0967
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Analysis, design and realisation of a zero-current transition pulse-width modulation interleaved boost power factor correction converter with a zero-current transition auxiliary circuit.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 9, p. 1777, doi. 10.1049/iet-pel.2014.0938
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Notch filter-based fundamental frequency component extraction to control distribution static compensator for mitigating current-related power quality problems.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 9, p. 1758, doi. 10.1049/iet-pel.2014.0486
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Constant on time controlled zero voltage switching electronic ballast with power quality improvement.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 9, p. 1710, doi. 10.1049/iet-pel.2014.0160
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Design and realisation of a zero-voltage transition pulse-width modulation interleaved boost power factor correction converter.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 8, p. 1542, doi. 10.1049/iet-pel.2014.0313
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Study and implementation of an improvedpower factor alternating-current-light emitting diode driver.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 7, p. 1156, doi. 10.1049/iet-pel.2014.0182
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Power factor correction in switched mode power supply for computers using canonical switching cell converter.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 2, p. 234, doi. 10.1049/iet-pel.2014.0123
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Digital control of isolated Cuk power factor correction converter under wide range of load variation.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 1, p. 142, doi. 10.1049/iet-pel.2014.0111
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Passive lossless snubber for double-ended flyback converter.
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- IET Power Electronics (Wiley-Blackwell), 2015, v. 8, n. 1, p. 56, doi. 10.1049/iet-pel.2013.0862
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High efficient series resonant converter using direct power conversion.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 12, p. 3045, doi. 10.1049/iet-pel.2014.0077
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Shunt semi-active power factor correction circuit for permanent magnet synchronous motor driver.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 10, p. 1, doi. 10.1049/iet-pel.2013.0713
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Study on an interleaved buck power factor corrector with gallium nitride field effect transistor and integrated inductor.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 10, p. 2506, doi. 10.1049/iet-pel.2013.0642
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Reduced sensor configuration of brushless DC motor drive using a power factor correction-based modified-zeta converter.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 9, p. 2322, doi. 10.1049/iet-pel.2013.0177
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Contribution to digital power factor correction controllers in high intensity discharge lamps electronic ballast applications.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 7, p. 1886, doi. 10.1049/iet-pel.2013.0401
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Analysis, design and control of single-phase three-level power factor correction rectifier fed switched reluctance motor drive.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 7, p. 1499, doi. 10.1049/iet-pel.2013.0621
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Analysis, design and control of single-phase three-level power factor correction rectifier fed switched reluctance motor drive.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 6, p. 1499, doi. 10.1049/iet-pel.2013.0621
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Zero-voltage transition bridgeless single-ended primary inductance converter power factor correction rectifier.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 4, p. 895, doi. 10.1049/iet-pel.2013.0350
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Improved passive snubbers suitable for single-phase isolated full-bridge boost power factor correction converter.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 2, p. 279, doi. 10.1049/iet-pel.2013.0118
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Study of safety operation of AC resistance spot welding system.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 1, p. 141, doi. 10.1049/iet-pel.2013.0094
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Commutation technique in the supply of electromagnetic actuators.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 1, p. 132, doi. 10.1049/iet-pel.2013.0172
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Single-stage high-power factor half-bridge flyback converter with synchronous rectifier.
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- IET Power Electronics (Wiley-Blackwell), 2014, v. 7, n. 1, p. 1, doi. 10.1049/iet-pel.2011.0387
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- Article