DC Power Bibliography
Found 95 results
Author Title Type [ Year
Filters: Keyword is Pulse width modulation [Clear All Filters]
{DC voltage control strategy for a five-level converter}. Applied Power Electronics Conference and Exposition, 1999. APEC '99. Fourteenth Annual. 1:521–527vol.1.
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1999. {A novel current-control method for three-phase PWM AC/DC voltage-source converters}. Industrial Electronics, IEEE Transactions on. 46:544–553.
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1999. A novel current-control method for three-phase PWM AC/DC voltage-source converters. Industrial Electronics, IEEE Transactions on. 46:544–553.
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1999. A novel three-phase AC/DC converter without front-end filter based on adjustable triangular-wave PWM technique. Power Electronics, IEEE Transactions on. 14:233–245.
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1999. {A novel three-phase AC/DC converter without front-end filter based on adjustable triangular-wave PWM technique}. Power Electronics, IEEE Transactions on. 14:233–245.
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1999. A novel three-phase AC/DC converter without front-end filter based on adjustable triangular-wave PWM technique. Power Electronics, IEEE Transactions on. 14:233–245.
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1999. DC voltage control and stability analysis of PWM-voltage-type reversible rectifiers. Industrial Electronics, IEEE Transactions on. 45:263–273.
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1998. {DC voltage control and stability analysis of PWM-voltage-type reversible rectifiers}. Industrial Electronics, IEEE Transactions on. 45:263–273.
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1998. A family of closed-form duty cycle control laws for three-phase boost AC/DC converter. Industrial Electronics, IEEE Transactions on. 45:530–543.
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1998. {A family of closed-form duty cycle control laws for three-phase boost AC/DC converter}. Industrial Electronics, IEEE Transactions on. 45:530–543.
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1998. Lyapunov-based control for three-phase PWM AC/DC voltage-source converters. Power Electronics, IEEE Transactions on. 13:801–813.
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1998. {Lyapunov-based control for three-phase PWM AC/DC voltage-source converters}. Power Electronics, IEEE Transactions on. 13:801–813.
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1998. {Modeling and control of parallel three-phase PWM boost rectifiers in PEBB-based DC distributed power systems}. Applied Power Electronics Conference and Exposition, 1998. APEC '98. Conference Proceedings 1998., Thirteenth Annual. 2:1126–1132vol.2.
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1998. Modeling and control of parallel three-phase PWM boost rectifiers in PEBB-based DC distributed power systems. Applied Power Electronics Conference and Exposition, 1998. APEC '98. Conference Proceedings 1998., Thirteenth Annual. 2:1126–1132vol.2.
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1998. {Three-phase rectifier using a Sepic DC-DC converter in continuous conduction mode for power factor correction}. Telecommunications Energy Conference, 1998. INTELEC. Twentieth International. :491–497.
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1998. Three-phase rectifier using a Sepic DC-DC converter in continuous conduction mode for power factor correction. Telecommunications Energy Conference, 1998. INTELEC. Twentieth International. :491–497.
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1998. {The auxiliary resonant commutated pole matrix converter for DC-applications}. Power Electronics Specialists Conference, 1997. PESC '97 Record., 28th Annual IEEE. 2:1225–1231vol.2.
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1997. The auxiliary resonant commutated pole matrix converter for DC-applications. Power Electronics Specialists Conference, 1997. PESC '97 Record., 28th Annual IEEE. 2:1225–1231vol.2.
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1997. DSP based implementation of a PWM AC/DC/AC converter using space vector modulation with primary emphasis on the analysis of the practical problems involved. Applied Power Electronics Conference and Exposition, 1997. APEC '97 Conference Proceedings 1997., Twelfth Annual. 1:306–312vol.1.
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1997. {DSP based implementation of a PWM AC/DC/AC converter using space vector modulation with primary emphasis on the analysis of the practical problems involved}. Applied Power Electronics Conference and Exposition, 1997. APEC '97 Conference Proceedings 1997., Twelfth Annual. 1:306–312vol.1.
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1997. {New current-controlled PWM rectifier-voltage source inverter without DC link components}. Power Conversion Conference - Nagaoka 1997., Proceedings of the. 2:783–786vol.2.
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1997. New current-controlled PWM rectifier-voltage source inverter without DC link components. Power Conversion Conference - Nagaoka 1997., Proceedings of the. 2:783–786vol.2.
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1997. {Optimum PWM pattern for a three-phase boost DCM PFC rectifier}. Proc. IEEE APEC'97. 2:895–901.
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1997. Optimum PWM pattern for a three-phase boost DCM PFC rectifier. Proc. IEEE APEC’97. 2:895–901.
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1997. High-precision current source using low-loss, single-switch, three-phase AC/DC converter. Power Electronics, IEEE Transactions on. 11:561–566.
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1996.