DC Power Bibliography
{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.
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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.
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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.
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2008. Configuration and control of a DC microgrid for residential houses. Transmission and Distribution Conference and Exposition: Asia and Pacific, T and D Asia 2009.
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2009. {Configuration and control of a DC microgrid for residential houses}. Transmission and Distribution Conference and Exhibition: Asia and Pacific, IEEE/PES. :1–4.
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2009. Energy management of hybrid DC and AC bus linked microgrid. 2nd International Symposium on Power Electronics for Distributed Generation Systems, PEDG 2010. :713–716.
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2010. {Energy management of hybrid DC and AC bus linked microgrid}. 2nd International Symposium on Power Electronics for Distributed Generation Systems, PEDG 2010. :713–716.
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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.
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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.
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2010. Loss evaluation of dc distribution for residential houses compared with ac system. 2010 International Power Electronics Conference - ECCE Asia -, IPEC 2010. :480–486.
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2010. {Loss evaluation of dc distribution for residential houses compared with ac system}. 2010 International Power Electronics Conference - ECCE Asia -, IPEC 2010. :480–486.
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2010. Present Situation of Research on Microgrid and the Necessity of Developing DC Microgrid. Advanced Materials Research. 614-615:1744–1748.
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2012. {Present Situation of Research on Microgrid and the Necessity of Developing DC Microgrid}. Advanced Materials Research. 614-615:1744–1748.
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2012. Design and implementation of energy management system with fuzzy control for DC microgrid systems. IEEE Transactions on Power Electronics. 28:1563–1570.
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2013. {Design and implementation of energy management system with fuzzy control for DC microgrid systems}. IEEE Transactions on Power Electronics. 28:1563–1570.
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2013. Integrated full-bridge-forward dc-dc converter for a residential microgrid application. IEEE Transactions on Power Electronics. 28:1728–1740.
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2013. {Integrated full-bridge-forward dc-dc converter for a residential microgrid application}. IEEE Transactions on Power Electronics. 28:1728–1740.
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2013. {Aggregation of microgrids with DC system}. Electric Power Systems Research. 108:134–143.
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2014. Aggregation of microgrids with DC system. Electric Power Systems Research. 108:134–143.
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2014. {DC Microgrid for Wind and Solar Power Integration}. IEEE Journal of Emerging and Selected Topics in Power Electronics. 2:115–126.
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2014. DC Microgrid for Wind and Solar Power Integration. IEEE Journal of Emerging and Selected Topics in Power Electronics. 2:115–126.
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2014. {A Hybrid Microgrid With DC Connection at Back to Back Converters}. Smart Grid, IEEE Transactions on. 5:251–259.
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2014. A Hybrid Microgrid With DC Connection at Back to Back Converters. Smart Grid, IEEE Transactions on. 5:251–259.
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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.
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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.
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2014.