DC Power Bibliography
Found 99 results
Author [ Title
Filters: First Letter Of Last Name is P [Clear All Filters]
Feasibility study of DC electrical distribution system. Power Electronics and ECCE Asia (ICPE & ECCE), 2011 IEEE 8th International Conference on. :2935–2938.
.
2011. {The feasibility of small-scale residential DC distribution systems}. IECON Proceedings (Industrial Electronics Conference). :2618–2623.
.
2006. The feasibility of small-scale residential DC distribution systems. IECON Proceedings (Industrial Electronics Conference). :2618–2623.
.
2006. {Feasibility of a DC network for commercial facilities}. IEEE Transactions on Industry Applications. 39:1499–1507.
.
2003. Feasibility of a DC network for commercial facilities. IEEE Transactions on Industry Applications. 39:1499–1507.
.
2003. {A family of closed-form duty cycle control laws for three-phase boost AC/DC converter}. Industrial Electronics, IEEE Transactions on. 45:530–543.
.
1998. A family of closed-form duty cycle control laws for three-phase boost AC/DC converter. Industrial Electronics, IEEE Transactions on. 45:530–543.
.
1998. {Extension of inductor voltage control to three-phase buck-type AC-DC converter}. Power Electronics, IEEE Transactions on. 15:295–302.
.
2000. Extension of inductor voltage control to three-phase buck-type AC-DC converter. Power Electronics, IEEE Transactions on. 15:295–302.
.
2000. .
2010. .
2010. {Editorial Special Issue on Distributed Power Generation}. Power Electronics, IEEE Transactions on. 19:1157–1158.
.
2004. Editorial Special Issue on Distributed Power Generation. Power Electronics, IEEE Transactions on. 19:1157–1158.
.
2004. {Economic viability improvement of solar powered Indian rural banks through DC grids}. India Conference (INDICON), 2011 Annual IEEE. :1–4.
.
2011. Economic viability improvement of solar powered Indian rural banks through DC grids. India Conference (INDICON), 2011 Annual IEEE. :1–4.
.
2011. {Drainback solar thermal systems: A review}. Solar Energy. 128:41–60.
.
2016. Design of a Wide Input Range DC–DC Converter With a Robust Power Control Scheme Suitable for Fuel Cell Power Conversion. Industrial Electronics, IEEE Transactions on. 55:1247–1255.
.
2008. {Design of a Wide Input Range DC{&}{\#}x2013;DC Converter With a Robust Power Control Scheme Suitable for Fuel Cell Power Conversion}. Industrial Electronics, IEEE Transactions on. 55:1247–1255.
.
2008. {DC task team report}. Industrial {&} Commercial Power Systems Technical Conf (I{&}CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. {DC task team report}. Industrial {&} Commercial Power Systems Technical Conf (I{&}CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. {DC task team report}. Industrial {&} Commercial Power Systems Technical Conf (I{&}CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. DC task team report. Industrial & Commercial Power Systems Technical Conf (I&CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. DC task team report. Industrial & Commercial Power Systems Technical Conf (I&CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. DC task team report. Industrial & Commercial Power Systems Technical Conf (I&CPS), 2013 IEEE/IAS 49th. :1–9.
.
2013. {DC supply of low-voltage electricity appliances in residential buildings}. 20th International Conference and Exhibition on Electricity Distribution (CIRED 2009). :1–4.
.
2009.