DC Power Bibliography
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. Analysis and design of three-phase AC-to-DC converters with high power factor and near-optimum feedforward. Industrial Electronics, IEEE Transactions on. 46:535–543.
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1999. {Analysis and design of three-phase AC-to-DC converters with high power factor and near-optimum feedforward}. Industrial Electronics, IEEE Transactions on. 46:535–543.
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1999. {Feedback control of the input DC voltage sources of the seven levels NPC voltage source inverter}. Africon, 1999 IEEE. 2:691–696vol.2.
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1999. Feedback control of the input DC voltage sources of the seven levels NPC voltage source inverter. Africon, 1999 IEEE. 2:691–696vol.2.
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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. 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. {New space-vector control strategies for three-phase step-up/down AC/DC converter}. Industrial Electronics, IEEE Transactions on. 47:25–35.
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2000. New space-vector control strategies for three-phase step-up/down AC/DC converter. Industrial Electronics, IEEE Transactions on. 47:25–35.
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2000. Multi-level, uni-directional AC-DC converters, a cost effective alternative to bi-directional converters. Power Electronics Specialists Conference, 2001. PESC. 2001 IEEE 32nd Annual. 4:1911–1916vol.4.
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2001. {Multi-level, uni-directional AC-DC converters, a cost effective alternative to bi-directional converters}. Power Electronics Specialists Conference, 2001. PESC. 2001 IEEE 32nd Annual. 4:1911–1916vol.4.
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2001. {DC distribution for industrial systems: opportunities and challenges}. Industry Applications, IEEE Transactions on. 39:1596–1601.
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2003. DC distribution for industrial systems: opportunities and challenges. Industry Applications, IEEE Transactions on. 39:1596–1601.
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2003. {Editorial Special Issue on Distributed Power Generation}. Power Electronics, IEEE Transactions on. 19:1157–1158.
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2004. Editorial Special Issue on Distributed Power Generation. Power Electronics, IEEE Transactions on. 19:1157–1158.
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2004. AC vs. DC distribution: Maximum transfer capability. Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE. :1–6.
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2008. {AC vs. DC distribution: Maximum transfer capability}. Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE. :1–6.
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2008. Co-existance between AC-Distribution and DC-Distribution: In the View of Appliances. Computer and Electrical Engineering, 2009. ICCEE '09. Second International Conference on. 1:421–425.
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2009. {Co-existance between AC-Distribution and DC-Distribution: In the View of Appliances}. Computer and Electrical Engineering, 2009. ICCEE '09. Second International Conference on. 1:421–425.
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2009.