DC Power Bibliography
Found 42 results
[ Author
Filters: Keyword is Power system harmonics [Clear All Filters]
An alternate solution for AC/DC static conversion with sinusoidal line current. Power Electronics Specialists Conference, 1995. PESC '95 Record., 26th Annual IEEE. 2:1178–1182vol.2.
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1995. {An alternate solution for AC/DC static conversion with sinusoidal line current}. Power Electronics Specialists Conference, 1995. PESC '95 Record., 26th Annual IEEE. 2:1178–1182vol.2.
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1995. {Dynamic performance of an HVDC quasi 24-pulse series tapping station}. Power Delivery, IEEE Transactions on. 3:2112–2118.
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1988. Dynamic performance of an HVDC quasi 24-pulse series tapping station. Power Delivery, IEEE Transactions on. 3:2112–2118.
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1988. {A Modified Parallel HVDC Converter for 24 Pulse Operation}. Power Engineering Review, IEEE. 11:50.
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1991. A Modified Parallel HVDC Converter for 24 Pulse Operation. Power Engineering Review, IEEE. 11:50.
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1991. {Zero average current error controlled power flow for AC-DC power converters}. Power Electronics, IEEE Transactions on. 10:725–732.
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1995. Zero average current error controlled power flow for AC-DC power converters. Power Electronics, IEEE Transactions on. 10:725–732.
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1995. {Sinusoidal current rectification in a very wide range three-phase AC input to a regulated DC output}. Industry Applications Conference, 1995. Thirtieth IAS Annual Meeting, IAS '95., Conference Record of the 1995 IEEE. 3:2341–2347vol.3.
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1995. Sinusoidal current rectification in a very wide range three-phase AC input to a regulated DC output. Industry Applications Conference, 1995. Thirtieth IAS Annual Meeting, IAS '95., Conference Record of the 1995 IEEE. 3:2341–2347vol.3.
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1995. Sinusoidal current rectification and ripple cancellation in a very wide three phase AC input to generate a regulated DC output. Power Electronics, Drives and Energy Systems for Industrial Growth, 1996., Proceedings of the 1996 International Conference on. 2:644–648vol.2.
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1996. {Sinusoidal current rectification and ripple cancellation in a very wide three phase AC input to generate a regulated DC output}. Power Electronics, Drives and Energy Systems for Industrial Growth, 1996., Proceedings of the 1996 International Conference on. 2:644–648vol.2.
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1996. {A three-phase predictive PWM AC/DC converter with phase compensation and space vector control}. Applied Power Electronics Conference and Exposition, 1995. APEC '95. Conference Proceedings 1995., Tenth Annual. :863–869vol.2.
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1995. A three-phase predictive PWM AC/DC converter with phase compensation and space vector control. Applied Power Electronics Conference and Exposition, 1995. APEC '95. Conference Proceedings 1995., Tenth Annual. :863–869vol.2.
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1995. Frequency domain analysis and evaluation of differential mode input current for three-phase DCM boost rectifiers with different control strategies. Power Electronics Specialists Conference, 2000. PESC 00. 2000 IEEE 31st Annual. 1:482–487vol.1.
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2000. {Frequency domain analysis and evaluation of differential mode input current for three-phase DCM boost rectifiers with different control strategies}. Power Electronics Specialists Conference, 2000. PESC 00. 2000 IEEE 31st Annual. 1:482–487vol.1.
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2000. {A Sinusoidal Pulsewidth Modulated Three-Phase AC to DC Converter-Fed DC Motor Drive}. Industry Applications, IEEE Transactions on. IA-21:1394–1408.
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1985. A Sinusoidal Pulsewidth Modulated Three-Phase AC to DC Converter-Fed DC Motor Drive. Industry Applications, IEEE Transactions on. IA-21:1394–1408.
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1985. {Autotransformer configurations to enhance utility power quality of high power AC/DC rectifier systems}. Particle Accelerator Conference, 1995., Proceedings of the 1995. 3:1985–1987vol.3.
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1995. Autotransformer configurations to enhance utility power quality of high power AC/DC rectifier systems. Particle Accelerator Conference, 1995., Proceedings of the 1995. 3:1985–1987vol.3.
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1995. {A new control strategy to improve the performance of a PWM AC to DC converter under unbalanced operating conditions}. Power Electronics, IEEE Transactions on. 8:493–500.
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1993. A new control strategy to improve the performance of a PWM AC to DC converter under unbalanced operating conditions. Power Electronics, IEEE Transactions on. 8:493–500.
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1993. {A Pulsewidth Controlled AC-to-DC Converter to Improve Power Factor and Waveform of AC Line Current}. Industry Applications, IEEE Transactions on. IA-15:670–675.
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1979. A Pulsewidth Controlled AC-to-DC Converter to Improve Power Factor and Waveform of AC Line Current. Industry Applications, IEEE Transactions on. IA-15:670–675.
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1979. {New control scheme for AC-DC-AC converter without DC link electrolytic capacitor}. Power Electronics Specialists Conference, 1993. PESC '93 Record., 24th Annual IEEE. :300–306.
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1993.