EPE-PEMC 1998 - Topic 02: 'Power Conversion' | ||
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![]() | Analysis and design of fixed-frequency clamped-mode resonant converters
By Sergio A. Gonzalez; Maria Ines Valla; Carlos H. Muravchik | |
Abstract: Analysis and design of fixed-frequency clamped-mode resonant converters
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![]() | A new high voltage single phase rectifier with a high power factor and sinusoidal input current
By V. Fernao Pires; J. Fernando Silva | |
Abstract: A new high voltage single phase rectifier with a high power factor and sinusoidal input current
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![]() | Adjustable frequency controlled waveform voltage generated by the DC-to-AC converters
By W. Koczara; J. Matraszek; R. Seliga | |
Abstract: Adjustable frequency controlled waveform voltage generated by the DC-to-AC converters
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![]() | New searching method for optimum converters' operating point using genetic algorithms
By Jumpei Baba; Eisuke Masada | |
Abstract: New searching method for optimum converters' operating point using generic algorithms
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![]() | Diagnosis of asymmetries in bridge converters using a novel transform to symmetrical space-phasor-components
By B. Strobl; W. Heinrich; G. Herold | |
Abstract: Diagnosis of asymmetries in bridge converters using a novel transform to symmetrical space-phasor-components
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![]() | Possibility of the power losses minimizing in AC/DC/AC converter
By A. Sikorski | |
Abstract: Possibility of the power losses minimizing in AC/DC/AC converter
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![]() | 'Starfly' three-phase three-switches power factor correction circuit operating in discontinuous cobnduction mode
By D. Cretu; W. D. Dunford; M. Edmunds | |
Abstract: 'Starfly' three-phase three-switches power factor correction circuit operating in discontinuous cobnduction mode
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![]() | Fixed-frequency mode phase-shifting voltage control ZCS DC-DC converter using SI device
By H. Ogiwara; M. Nakaoka | |
Abstract: Fixed-frequency mode phase-shifting voltage control ZCS DC-DC converter using Si device
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![]() | Bi-directional switch current commutation for matrix converter applications
By L. Empringham; P. W. Wheeler; J. C. Clare | |
Abstract: Bi-directional switch current commutation for matrix converter applications
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![]() | The PWM resonant inverter
By V. Racek; P. Flajzik; R. Kristof | |
Abstract: The PWM resonant inverter
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![]() | Four quadrant switches direct matrix converter. Switching management by time gap regulation
By H. Boulant; L. Mazet; J.-J. Huselstein; C. Glaize | |
Abstract: Four quadrant switches direct matrix converter. Switching management by time gap regulation
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![]() | An improved computer aided design program for energy recovering snubbers in inverter applications working in the windows environment
By J. C. Regidor; V. M. Guzman; M. I. Gimenez de Guzman; E. Sanchez | |
Abstract: An improved computer aided design program for energy recovering snubbers in inverter applications working in the windows environment
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![]() | Switching control in three-phase matrix converters by discrimination of command orders
By L. Mazet; H. Boulant; J.-J. Huselstein; C. Glaize | |
Abstract: Switching control in three-phase matrix converters by discrimination of command orders
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![]() | Three-phases voltage source inverter with feedforward switching losses optimisation technique
By S. E. Ryvkin; D. B. Izosimov; S. V. Belkin | |
Abstract: Three-phases voltage source inverter with feedforward switching losses optimisation technique
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![]() | Commutation structure of the converter with perfect diodes and the program for its determination
By B. Grzesik | |
Abstract: Commutation structure of the converter with perfect diodes and the program for its determination
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![]() | Direct frequency conversion process for different modes
By L. Rutmanis; J. Stabulnieks; L. Ribickis | |
Abstract: Direct frequency conversion process for different modes
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![]() | Design considerations of a two channel DC-DC resonant converter
By I. Nagy; P. Korondi; J. Hamar | |
Abstract: Design considerations of a two channel DC-DC resonant converter
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![]() | Predicting real characteristics of flyback zero-voltage switching quasi-resonant converters
By N. P. Polyzos; E. C. Tatakis | |
Abstract: Predicting real characteristics of flyback zero-voltage switching quasi-resonant converters
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![]() | Active clamped resonant DC link inverter: from analysis to experimental model
By S. Ivanov; A. Campeanu; A. Bitoleanu; D. Telteu | |
Abstract: Active clamped resonant DC link inverter: from analysis to experimental model
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![]() | Design criterion for a capacitor controlled single-phase induction motor
By Jawad Faiz; A. Servatian | |
Abstract: Design criterion for a capacitor controlled single-phase induction motor
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![]() | Features of series resonant converters with center-TAP rectifiers
By J. Goren; B. Kurchik | |
Abstract: Features of series resonant converters with center-TAP rectifiers
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![]() | Multimicro control systems for complex multi-section power converters
By A. Scaglia; V. Vaccaro | |
Abstract: Multimicro control systems for complex multi-section power converters
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![]() | Neural network for control of pulse-width modulation inverters
By A. Dinu; M. McCormick; M. N. Cristea; A. Ometto; N. Rotondale | |
Abstract: Neural network for control of pulse-width modulation inverters
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![]() | Three-phase rectifier for AC-drives incorporated with active power filter
By S. N. Kalachnikov | |
Abstract: Three-phase rectifier for AC-drives incorporated with active power filter
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![]() | Arrangements for balancing the capacitors in a five level diode clamped inverter
By M. Sumner; C. Newton | |
Abstract: Arrangements for balancing the capacitors in a five level diode clamped inverter
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![]() | One-cycle resonant converter suitable for high-performance DC-DC conversion applications
By S. Stefanescu; M. Chindris; I. Vadan | |
Abstract: One-cycle resonant converter suitable for high-performance DC-DC conversion applications
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![]() | Near control microprocessing of the bidirectional switches in three-phase direct power converters
By P. Georger; C. Gattardi | |
Abstract: Near control microprocessing of the bidirectional switches in three-phase direct power converters
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![]() | A floating point DSP approach to the AC-DC-AC converter control circuit
By Leszek Debowski; Marek Hartman; Jan Iwaszkiewicz | |
Abstract: A floating point DSP approach to the AC-DC-AC converter control circuit
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![]() | PC-based hardware and software design for a cycloconverter-fed stator flux oriented vector controlled synchronous motor drive
By S. P. Das; A. K. Chattopadhyay | |
Abstract: PC-based hardware and software design for a cycloconverter-fed stator flux oriented vector controlled synchronous motor drive
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![]() | Low harmonic three-phase rectifiers applying current injection
By P. Pejovic; Z. Janda | |
Abstract: Low harmonic three-phase rectifiers applying current injection
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![]() | A control system for current-type PWM rectifiers based in the space vector technique and sliding mode control
By G. D. Marques | |
Abstract: A control system for current-type PWM rectifiers based in the space vector technique and sliding mode control
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![]() | Numerical control of unity power factor multiple output fly-back converters without feedback loop
By F. B. Rasoanarivo; S. Pierfederici; I. Rasoanarivo; B. Davat | |
Abstract: Numerical control of unity power factor multiple output fly-back converters without feedback loop
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![]() | Three-phase voltage fed inverter with low frequency switching-operated optimum PWM strategy
By Y. Konishi; Y. L. Feng; T. Nakamizo; M. Nakaoka | |
Abstract: Three-phase voltage fed inverter with low frequency switching-operated optimum PWM strategy
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![]() | Description of an entirely re-programmable hardware system dedicated to the control of a three-phase PWM inverter
By E. Monmasson; K. Tazi; J. P. Louis | |
Abstract: Description of an entirely re-programmable hardware system dedicated to the control of a three-phase PWM inverter
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![]() | Pulsed power supply employing magnetic pulse compression technology
By Dai Yuhang; Qian Zhaoming | |
Abstract: Pulsed power supply employing magnetic pulse compression technology
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![]() | Three-phase current-fed soft-switching optimum PWM recfifier for high-power applications and open-loop operation in steady-state
By Y. Konishi; M. Ishibashi; M. Yamamoto; E. Heraki; M. Nakaoka | |
Abstract: Three-phase current-fed soft-switching optimum PWM recfifier for high-power applications and open-loop operation in steady-state
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![]() | Development of DC-DC converters using soft switching
By K. El Khamlichi Drissi; D. Belkhayat | |
Abstract: Development of DC-DC converters using soft switching
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![]() | A non-dissipative 3D-2C-1L resonant recovery snubber cell for single-switch soft-switching buck DC/DC converters
By D. Garabandic; M. Kuzmanoovic; W. G. Dunnford | |
Abstract: A non-dissipative 3D-2C-1L resonant recovery snubber cell for single-switch soft-switching buck DC/DC converters
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![]() | Randomness and random PWM
By K. K. Sung; S. Sathiakumar; S. Y. R. Hui; Yash Shrivastava | |
Abstract: Randomness and random PWM
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![]() | Control of four-leg voltage source pulse width modulation inverters
By Salem M. Ali; Marian P. Kazmierkowski | |
Abstract: Control of four-leg voltage source pulse width modulation inverters
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![]() | Single sensor three phase inverters with reactive power feedback derived from the DC-link
By S. N. Vukosavic; LJ. Peric; V. Vuckovic | |
Abstract: Single sensor three phase inverters with reactive power feedback derived from the DC-link
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![]() | The (quasi) resonant flyback converter
By Zoltan Puklus | |
Abstract: The (quasi) resonant flyback converter
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![]() | Feasible performance evaluations of digitally-controlled auxiliary resonant commutation snubber three phase voltage source soft-switching inverter
By E. Hiraki; M. Yamamoto; S. Sugimoto; M. Nakaoka | |
Abstract: Feasible performance evaluations of digitally-controlled auxiliary resonant commutation snubber three phase voltage source soft-switching inverter
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![]() | DH Phenomenon in high frequency rectifiers
By Lupco V. Karadzinov; David C. Hamill | |
Abstract: DH Phenomenon in high frequency rectifiers
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![]() | High quality modulation for induction motor drives
By C. Attaianese; A. Ometto; A. Perfetto; N. Rotondale | |
Abstract: High quality modulation for induction motor drives
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![]() | Voltage source type series inductor-compensated load resonant inverter with PDM & PWM hybrid control scheme for silent discharge-based ozonizer
By S. P. Wang; S. Shirakawa; M. Nakaoka; Y. Konishi | |
Abstract: Voltage source type series inductor-compensated load resonant inverter with PDM & PWM hybrid control scheme for silent discharge-based ozonizer
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