DC Power Bibliography

Found 114 results
Author [ Title(Asc)] Type Year
Filters: First Letter Of Last Name is H  [Clear All Filters]
A B C D E F G H I J K L M N O P Q R S T U V W X Y Z 
I
Eiholzer T, Olsen D, Hoffmann S, Sturm B, Wellig B.  2017.  {Integration of a solar thermal system in a medium-sized brewery using pinch analysis: Methodology and case study}. Applied Thermal Engineering. 113:1558–1568.
Song S-H, Kang S-il, Hahm N-kun.  2003.  {Implementation and control of grid connected AC-DC-AC power converter for variable speed wind energy conversion system}. Eighteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2003. APEC '03.. 1:154–158.
Song S-H, Kang S-il, Hahm N-kun.  2003.  Implementation and control of grid connected AC-DC-AC power converter for variable speed wind energy conversion system. Eighteenth Annual IEEE Applied Power Electronics Conference and Exposition, 2003. APEC '03.. 1:154–158.
F
Kakigano H, Hashimoto T, Matsumura Y, Kurotani T, Iwamoto W, Miura Y, Ise T, Momose T, Hayakawa H.  2010.  {Fundamental characteristics of laboratory scale model DC microgrid to exchange electric power from distributed generators installed in residential houses}. Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi). 172:28–41.
Kakigano H, Hashimoto T, Matsumura Y, Kurotani T, Iwamoto W, Miura Y, Ise T, Momose T, Hayakawa H.  2010.  {Fundamental characteristics of laboratory scale model DC microgrid to exchange electric power from distributed generators installed in residential houses}. Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi). 172:28–41.
Kakigano H, Hashimoto T, Matsumura Y, Kurotani T, Iwamoto W, Miura Y, Ise T, Momose T, Hayakawa H.  2010.  Fundamental characteristics of laboratory scale model DC microgrid to exchange electric power from distributed generators installed in residential houses. Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi). 172:28–41.
Kakigano H, Hashimoto T, Matsumura Y, Kurotani T, Iwamoto W, Miura Y, Ise T, Momose T, Hayakawa H.  2010.  Fundamental characteristics of laboratory scale model DC microgrid to exchange electric power from distributed generators installed in residential houses. Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi). 172:28–41.
Kakigano H, Miura Y, Ise T, Momose T, Hayakawa H.  2008.  {Fundamental characteristics of DC microgrid for residential houses with cogeneration system in each house}. IEEE Power and Energy Society 2008 General Meeting: Conversion and Delivery of Electrical Energy in the 21st Century, PES. :1–8.
Kakigano H, Miura Y, Ise T, Momose T, Hayakawa H.  2008.  Fundamental characteristics of DC microgrid for residential houses with cogeneration system in each house. IEEE Power and Energy Society 2008 General Meeting: Conversion and Delivery of Electrical Energy in the 21st Century, PES. :1–8.
Kakigano H, Miura Y, Ise T, Momose T, Hayakawa H.  2008.  Fundamental characteristics of DC microgrid for residential houses with cogeneration system in each house. IEEE Power and Energy Society 2008 General Meeting: Conversion and Delivery of Electrical Energy in the 21st Century, PES.
Hopey D.  2015.  {FirstEnergy to pay for solar installations at CCAC}. Pittsburgh Post-Gazette.
Hopey D.  2015.  {FirstEnergy to pay for solar installations at CCAC}. Pittsburgh Post-Gazette.
Jahangiri M, Ghaderi R, Haghani A, Nematollahi O.  2016.  {Finding the best locations for establishment of solar-wind power stations in Middle-East using GIS: A review}. Renewable and Sustainable Energy Reviews. 66:38–52.
Hirose K, Takeda T, Fukui A.  2007.  {Field demonstration on multiple power quality supply system in Sendai, Japan}. 2007 9th International Conference on Electrical Power Quality and Utilisation. :1–6.
Hirose K, Takeda T, Fukui A.  2007.  Field demonstration on multiple power quality supply system in Sendai, Japan. 2007 9th International Conference on Electrical Power Quality and Utilisation. :1–6.

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