DC Power Bibliography

Found 164 results
Author Title [ Type(Asc)] Year
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Journal Article
Voyant C, Notton G, Kalogirou S, Nivet M-L, Paoli C, Motte F, Fouilloy A.  2017.  {Machine learning methods for solar radiation forecasting: A review}. Renewable Energy. 105:569–582.
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.
Kenning T.  2016.  {Indian oil firms plan 1GW solar plant in Madhya Pradesh to power refineries}. PV Times. :22.
Kaviti AKumar, Yadav A, Shukla A.  2016.  {Inclined solar still designs: A review}. Renewable and Sustainable Energy Reviews. 54:429–451.
Ouedraogo BI, Kouame S., Azoumah Y., Yamegueu D..  2015.  {Incentives for rural off grid electrification in Burkina Faso using LCOE}. Renewable Energy.
Azimoh CLeonard, Klintenberg P, Wallin F, Karlsson B.  2015.  {Illuminated but not electrified: An assessment of the impact of Solar Home System on rural households in South Africa}. Applied Energy.
Azimoh CLeonard, Klintenberg P, Wallin F, Karlsson B.  2015.  {Illuminated but not electrified: An assessment of the impact of Solar Home System on rural households in South Africa}. Applied Energy.
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.
Agrouaz Y., Bouhal T., Allouhi A., Kousksou T., Jamil A., Zeraouli Y..  2017.  {Energy and parametric analysis of solar absorption cooling systems in various Moroccan climates}. Case Studies in Thermal Engineering. 9:28–39.
Thi NBao Dung, Lin C-Y, Kumar G.  2016.  {Electricity generation comparison of food waste-based bioenergy with wind and solar powers: A mini review}. Sustainable Environment Research. 26:197–202.
Konishi K, Sugitani Y, Hara N.  2015.  {Dynamics of dc bus networks and their stabilization by decentralized delayed feedback}. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics. 91
Konishi K, Sugitani Y, Hara N.  2015.  Dynamics of dc bus networks and their stabilization by decentralized delayed feedback. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics. 91
Bae S, Kwasinski A.  2012.  Dynamic modeling and operation strategy for a microgrid with wind and photovoltaic resources. IEEE Transactions on Smart Grid. 3:1867–1876.
Bae S, Kwasinski A.  2012.  {Dynamic modeling and operation strategy for a microgrid with wind and photovoltaic resources}. IEEE Transactions on Smart Grid. 3:1867–1876.
Kwasinski A, Onwuchekwa CN.  2011.  {Dynamic Behavior and Stabilization of DC Microgrids With Instantaneous Constant-Power Loads}. IEEE Transactions on Power Electronics. 26:822–834.
Kwasinski A, Onwuchekwa CN.  2011.  Dynamic Behavior and Stabilization of DC Microgrids With Instantaneous Constant-Power Loads. IEEE Transactions on Power Electronics. 26:822–834.
Costa SCS, Diniz ASonia AC, Kazmerski LL.  2016.  {Dust and soiling issues and impacts relating to solar energy systems: Literature review update for 2012–2015}. Renewable and Sustainable Energy Reviews. 63:33–61.
Saikku L, Tainio P, Hildén M, Antikainen R, Leskinen P, Koskela S.  2017.  {Diffusion of solar electricity in the network of private actors as a strategic experiment to mitigate climate change}. Journal of Cleaner Production. 142:2730–2740.
Biczel P, Koniak M, Rasolomampionona DDauphin, Anwar S, Favier P.  2011.  Design of power plant capacity in DC hybrid system and microgrid. Energy Education Science and Technology Part A: Energy Science and Research. 27:221–232.
Biczel P, Koniak M, Rasolomampionona DDauphin, Anwar S, Favier P.  2011.  {Design of power plant capacity in DC hybrid system and microgrid}. Energy Education Science and Technology Part A: Energy Science and Research. 27:221–232.

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