DC Power Bibliography
Photovoltaic panel integrated power conditioning system using a high efficiency step-up DC-DC converter. Renewable Energy. 41:227–234.
.
2012. {Performance enhancement of solar still through efficient heat exchange mechanism – A review}. Applied Thermal Engineering. 114:815–836.
.
2017. {Performance enhancement of solar still through efficient heat exchange mechanism – A review}. Applied Thermal Engineering. 114:815–836.
.
2017. {Performance analysis of solar powered Unmanned Aerial Vehicle}. Renewable Energy. 104:20–29.
.
2017. {Passive and Active DC Breakers in the Three Gorges-Changzhou HVDC Project}. CIGRÉ Proceedings of the International Conference on Power Systems. :391–395.
.
2001. Passive and Active DC Breakers in the Three Gorges-Changzhou HVDC Project. CIGRÉ Proceedings of the International Conference on Power Systems. :391–395.
.
2001. {Participatory Business Models for Off-Grid Electrification}. Green Energy and Technology.
.
2013. {Optimal design of mixed AC–DC distribution systems for commercial buildings: A Nonconvex Generalized Benders Decomposition approach}. European Journal of Operational Research. 242:710–729.
.
2015. {Optimal design of mixed AC–DC distribution systems for commercial buildings: A Nonconvex Generalized Benders Decomposition approach}. European Journal of Operational Research. 242:710–729.
.
2015. {Off-grid electricity interventions for cleaner livelihoods: A case study of value chain development in Dhenkanal district of Odisha}. Journal of Cleaner Production.
.
2017. {Off-grid electricity generation with renewable energy technologies inIndia: An application of HOMER}. Renewable Energy.
.
2014. {Off-grid electricity for developing countries}. IEE Review.
.
1999. .
2016. A new ZVS bidirectional DC-DC converter for fuel cell and battery application. IEEE Transactions on Power Electronics. 19:54–65.
.
2004. {A new ZVS bidirectional DC-DC converter for fuel cell and battery application}. IEEE Transactions on Power Electronics. 19:54–65.
.
2004. {Natural dyes for dye sensitized solar cell: A review}. Renewable and Sustainable Energy Reviews. 69:705–718.
.
2017. {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.
.
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.
.
2014. {Model and Control of a DC Microgrid Made Up by Solar and Wind}. 2012 International Conference on Computer Science and Electronics Engineering. 1:437–441.
.
2012. Model and Control of a DC Microgrid Made Up by Solar and Wind. 2012 International Conference on Computer Science and Electronics Engineering. 1:437–441.
.
2012. Mode-Adaptive Decentralized Control for Renewable DC Microgrid With Enhanced Reliability and Flexibility. IEEE Transactions on Power Electronics. 29:5072–5080.
.
2014. {Mode-Adaptive Decentralized Control for Renewable DC Microgrid With Enhanced Reliability and Flexibility}. IEEE Transactions on Power Electronics. 29:5072–5080.
.
2014. {Mini-grid based off-grid electrification to enhance electricity access in developing countries: What policies may be required?} Energy Policy.
.
2016. {Mini-grid based electrification in Bangladesh: Technical configuration and business analysis}. Renewable Energy.
.
2015. A micro-DC power distribution system for a residential application energized by photovoltaic-wind/fuel cell hybrid energy systems. Energy and Buildings. 42:1344–1352.
.
2010.