DC Power Bibliography

Found 735 results
[ Author(Desc)] Title Type Year
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 
J
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.
Jamar A., Majid Z.A.A., Azmi W.H., Norhafana M., Razak A.A..  2016.  {A review of water heating system for solar energy applications}. International Communications in Heat and Mass Transfer. 76:178–187.
Jardini JA, Tahan CMV, Gouvea MR, Ahn SUn, Figueiredo FM.  2000.  {Daily load profiles for residential, commercial and industrial low voltage consumers}. Power Delivery, IEEE Transactions on. 15:375–380.
Jardini JA, Tahan CMV, Gouvea MR, Ahn SUn, Figueiredo FM.  2000.  Daily load profiles for residential, commercial and industrial low voltage consumers. Power Delivery, IEEE Transactions on. 15:375–380.
Jelle BPetter, Gao T, Mofid SAlex, Kol\aas T, Stenstad PMartin, Ng S.  2016.  {Avoiding Snow and Ice Formation on Exterior Solar Cell Surfaces – A Review of Research Pathways and Opportunities}. Procedia Engineering. 145:699–706.
Jenkins J.  2013.  {Energy Debate Redux: Will the Grid of the Future Run on DC Power?} The Energy Collective.
Jenkins J.  2013.  Energy Debate Redux: Will the Grid of the Future Run on DC Power? The Energy Collective.
Ji Y, Ai Q, Xie D.  2010.  分布式发电技术与智能电网技术的协同发展趋势 [research on co-developmental trend of distributed generation and smart grid]. power system technology. 34:15–23.
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.
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.
Johnson S.  2015.  {Inside (literally) wind turbines meant to work at the South Pole—and Mars | Ars Technica}. Ars Technica.
Johnson S.  2015.  {Inside (literally) wind turbines meant to work at the South Pole—and Mars | Ars Technica}. Ars Technica.
Jones DNelson.  2014.  Pittsburgh-region’s interest in solar energy is bright | Pittsburgh Post-Gazette. Pittsburgh Post-Gazette.
Jones DNelson.  2016.  {Aquaponics lab debuts Downtown as urban farming project | Pittsburgh Post-Gazette}. Post-Gazette.
Jones K.  2013.  {AC versus DC Power Distribution in the Data Center}.
Jones DNelson.  2016.  {Millvale, Etna: Rediscovered river towns}. Post-Gazette.
Jones DNelson.  2014.  {Pittsburgh-region's interest in solar energy is bright | Pittsburgh Post-Gazette}. Pittsburgh Post-Gazette.
Jones DNelson.  2016.  {Diana Nelson Jones' Walkabout: Homewood greenhouse powered by sun-sourced DC current | Pittsburgh Post-Gazette}. Pittsburgh Post-Gazette.
Jones K.  2013.  AC versus DC Power Distribution in the Data Center.
Jovcic D, van Hertem D, Linden K, Taisne J-P, Grieshaber W.  2011.  Feasibility of DC transmission networks. 2011 2nd IEEE PES International Conference and Exhibition on Innovative Smart Grid Technologies. :1–8.
Jovcic D.  2009.  Bidirectional, high-power DC transformer. IEEE Transactions on Power Delivery. 24:2276–2283.
Jovcic D.  2009.  {Bidirectional, high-power DC transformer}. IEEE Transactions on Power Delivery. 24:2276–2283.
Jovcic D, van Hertem D, Linden K, Taisne J-P, Grieshaber W.  2011.  {Feasibility of DC transmission networks}. 2011 2nd IEEE PES International Conference and Exhibition on Innovative Smart Grid Technologies. :1–8.
Justo JJohn, Mwasilu F, Lee J, Jung J-W.  2013.  {AC-microgrids versus DC-microgrids with distributed energy resources: A review}. Renewable and Sustainable Energy Reviews. 24:387–405.
Justo JJohn, Mwasilu F, Lee J, Jung JWoo.  2013.  AC-microgrids versus DC-microgrids with distributed energy resources: A review. Renewable and Sustainable Energy Reviews. 24:387–405.

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