DC Power Bibliography

Found 145 results
Author [ Title(Asc)] Type Year
Filters: First Letter Of Last Name is C  [Clear All Filters]
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Liu C, Chau KT, Diao C, Zhong J, Zhang X, Gao S, Wu D.  2010.  {A new DC micro-grid system using renewable energy and electric vehicles for smart energy delivery}. Vehicle Power and Propulsion Conference (VPPC), 2010 IEEE. :1–6.
Liu C, Chau KT, Diao C, Zhong J, Zhang X, Gao S, Wu D.  2010.  A new DC micro-grid system using renewable energy and electric vehicles for smart energy delivery. Vehicle Power and Propulsion Conference (VPPC), 2010 IEEE. :1–6.
Enjeti PN, Choudhury SA.  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.
Enjeti PN, Choudhury SA.  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.
Park K-S, Ahn S-C, Hyun D-seok, Choe S-Y.  2000.  {New control scheme for 3-phase PWM AC/DC converter without phase angle detection under unbalanced input voltage conditions}. Applied Power Electronics Conference and Exposition, 2000. APEC 2000. Fifteenth Annual IEEE. 1:501–505vol.1.
Park K-S, Ahn S-C, Hyun D-seok, Choe S-Y.  2000.  New control scheme for 3-phase PWM AC/DC converter without phase angle detection under unbalanced input voltage conditions. Applied Power Electronics Conference and Exposition, 2000. APEC 2000. Fifteenth Annual IEEE. 1:501–505vol.1.
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Carlton D, Dunford WG.  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.
Carlton D, Dunford WG.  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.
Pan CT, Chen T.-C..  1993.  {Modelling and analysis of a three phase PWM AC-DC convertor without current sensor}. Electric Power Applications, IEE Proceedings B. 140:201–208.
Pan CT, Chen T.-C..  1993.  Modelling and analysis of a three phase PWM AC-DC convertor without current sensor. Electric Power Applications, IEE Proceedings B. 140:201–208.
Gu W, Wu Z, Bo R, Liu W, Zhou G, Chen W, Wu Z.  2014.  {Modeling, planning and optimal energy management of combined cooling, heating and power microgrid: A review}. International Journal of Electrical Power and Energy Systems. 54:26–37.
Gu W, Wu Z, Bo R, Liu W, Zhou G, Chen W, Wu Z.  2014.  Modeling, planning and optimal energy management of combined cooling, heating and power microgrid: A review. International Journal of Electrical Power and Energy Systems. 54:26–37.
Seo G-S, Baek J, Choi K, Bae H, Cho B.  2011.  {Modeling and analysis of DC distribution systems}. 8th International Conference on Power Electronics - ECCE Asia. :223–227.
Seo G-S, Baek J, Choi K, Bae H, Cho B.  2011.  {Modeling and analysis of DC distribution systems}. 8th International Conference on Power Electronics - ECCE Asia. :223–227.
Seo G-S, Baek J, Choi K, Bae H, Cho B.  2011.  Modeling and analysis of DC distribution systems. 8th International Conference on Power Electronics - ECCE Asia. :223–227.
Seo G-S, Baek J, Choi K, Bae H, Cho B.  2011.  Modeling and analysis of DC distribution systems. 8th International Conference on Power Electronics - ECCE Asia. :223–227.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  {A micro-DC power distribution system for a residential application energized by photovoltaic–wind/fuel cell hybrid energy systems}. Energy and Buildings. 42:1344–1352.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  {A micro-DC power distribution system for a residential application energized by photovoltaic–wind/fuel cell hybrid energy systems}. Energy and Buildings. 42:1344–1352.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  A micro-DC power distribution system for a residential application energized by photovoltaic–wind/fuel cell hybrid energy systems. Energy and Buildings. 42:1344–1352.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  A micro-DC power distribution system for a residential application energized by photovoltaic–wind/fuel cell hybrid energy systems. Energy and Buildings. 42:1344–1352.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  A micro-DC power distribution system for a residential application energized by photovoltaic-wind/fuel cell hybrid energy systems. Energy and Buildings. 42:1344–1352.
Cetin E, Yilanci A, Ozturk HK, Colak M, Kasikci I, Iplikci S.  2010.  A micro-DC power distribution system for a residential application energized by photovoltaic-wind/fuel cell hybrid energy systems. Energy and Buildings. 42:1344–1352.
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Chen L, Blaabjerg F, Frederiksen PS.  1994.  {An improved predictive control for three-phase PWM AC/DC converter with low sampling frequency}. Industrial Electronics, Control and Instrumentation, 1994. IECON '94., 20th International Conference on. 1:399–404vol.1.
Chen L, Blaabjerg F, Frederiksen PS.  1994.  An improved predictive control for three-phase PWM AC/DC converter with low sampling frequency. Industrial Electronics, Control and Instrumentation, 1994. IECON '94., 20th International Conference on. 1:399–404vol.1.
Jin C, Wang P, Xiao J, Tang Y, Choo FHoong.  2014.  {Implementation of hierarchical control in DC microgrids}. IEEE Transactions on Industrial Electronics. 61:4032–4042.

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