DC Power Bibliography
.
2016.
{A three-phase AC to DC converter with controllable displacement factor}. Power Electronics Specialists Conference, 1995. PESC '95 Record., 26th Annual IEEE. 2:996–1000vol.2.
.
1995. A three-phase AC to DC converter with controllable displacement factor. Power Electronics Specialists Conference, 1995. PESC '95 Record., 26th Annual IEEE. 2:996–1000vol.2.
.
1995. {Thermo-electro-chemical storage (TECS) of solar energy}. Applied Energy. 190:788–799.
.
2017. {Technical and economical optimization for a typical solar hybrid coal-fired power plant in China}. Applied Thermal Engineering. 115:549–557.
.
2017. Three-phase AC/DC regulated power supplies: a comparative evaluation of different topologies. Applied Power Electronics Conference and Exposition, 2000. APEC 2000. Fifteenth Annual IEEE. 1:513–518vol.1.
.
2000. {Three-phase AC/DC regulated power supplies: a comparative evaluation of different topologies}. Applied Power Electronics Conference and Exposition, 2000. APEC 2000. Fifteenth Annual IEEE. 1:513–518vol.1.
.
2000. {Time value of emission and technology discounting rate for off-grid electricity generation in India using intermediate pyrolysis}. Environmental Impact Assessment Review.
.
2016. .
1996. .
1996.
{Third-harmonic modulated power electronics interface with three-phase utility to provide a regulated DC output and to minimize line-current harmonics}. Industry Applications, IEEE Transactions on. 31:598–602.
.
1995. Third-harmonic modulated power electronics interface with three-phase utility to provide a regulated DC output and to minimize line-current harmonics. Industry Applications, IEEE Transactions on. 31:598–602.
.
1995. {Three-phase rectifier using a Sepic DC-DC converter in continuous conduction mode for power factor correction}. Telecommunications Energy Conference, 1998. INTELEC. Twentieth International. :491–497.
.
1998. Three-phase rectifier using a Sepic DC-DC converter in continuous conduction mode for power factor correction. Telecommunications Energy Conference, 1998. INTELEC. Twentieth International. :491–497.
.
1998. .
2015.
Tesla and Edison Reconciled: An AC/DC Microgrid > ENGINEERING.com. Engineering.com.
.
2015. {Tesla and Edison Reconciled: An AC/DC Microgrid}. Engineering.com.
.
2015. Transmission and Distribution Networks : AC versus DC. IEEE Power Engineering Society General Meeting. :1–5.
.
2007. {Transmission and Distribution Networks : AC versus DC}. IEEE Power Engineering Society General Meeting. :1–5.
.
2007. Three-phase flyback AC-DC convertor with sinusoidal supply currents. Electric Power Applications, IEE Proceedings B. 138:143–151.
.
1991. {Three-phase flyback AC-DC convertor with sinusoidal supply currents}. Electric Power Applications, IEE Proceedings B. 138:143–151.
.
1991. {Three-phase step-down reversible AC-DC power converter}. Power Electronics, IEEE Transactions on. 12:319–324.
.
1997. Three-phase step-down reversible AC-DC power converter. Power Electronics, IEEE Transactions on. 12:319–324.
.
1997. {Transformerless four-wire PWM rectifier and its application in AC-DC-AC converters}. Electric Power Applications, IEE Proceedings -. 142:410–416.
.
1995. Transformerless four-wire PWM rectifier and its application in AC-DC-AC converters. Electric Power Applications, IEE Proceedings -. 142:410–416.
.
1995.