DC Power Bibliography

Found 61 results
Author [ Title(Desc)] Type Year
Filters: First Letter Of Last Name is I  [Clear All Filters]
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F
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.
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, 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.
L
Kakigano H, Nomura M, Ise T.  2010.  Loss evaluation of dc distribution for residential houses compared with ac system. 2010 International Power Electronics Conference - ECCE Asia -, IPEC 2010. :480–486.
Kakigano H, Nomura M, Ise T.  2010.  {Loss evaluation of dc distribution for residential houses compared with ac system}. 2010 International Power Electronics Conference - ECCE Asia -, IPEC 2010. :480–486.
Kakigano H, Miura Y, Ise T.  2010.  Low-Voltage Bipolar-Type DC Microgrid for Super High Quality Distribution. IEEE Transactions on Power Electronics. 25:3066–3075.
Kakigano H, Miura Y, Ise T.  2010.  Low-voltage bipolar-type dc microgrid for super high quality distribution. IEEE Transactions on Power Electronics. 25:3066–3075.
Kakigano H, Miura Y, Ise T.  2010.  {Low-Voltage Bipolar-Type DC Microgrid for Super High Quality Distribution}. IEEE Transactions on Power Electronics. 25:3066–3075.
N
Iimori K, Shinohara K, Tarumi O, Fu Z, Muroya M.  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.
Iimori K, Shinohara K, Tarumi O, Fu Z, Muroya M.  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.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  A new PWM control method for AC to DC converters with high-frequency transformer isolation. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  A new PWM control method for AC to DC converters with high-frequency transformer isolation. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  A new PWM control method for AC to DC converters with high-frequency transformer isolation. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  A new PWM control method for AC to DC converters with high-frequency transformer isolation. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  A new PWM control method for AC to DC converters with high-frequency transformer isolation. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  {A new PWM control method for AC to DC converters with high-frequency transformer isolation}. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  {A new PWM control method for AC to DC converters with high-frequency transformer isolation}. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.
Inagaki K, Furuhashi T, Ishiguro A, Inagaki K, Furuhashi T, Ishiguro A, Ishida M, Okuma S.  1989.  {A new PWM control method for AC to DC converters with high-frequency transformer isolation}. Industry Applications Society Annual Meeting, 1989., Conference Record of the 1989 IEEE. :783–789vol.1.

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