DC Power Bibliography
Found 76 results
Author [ Title
Filters: First Letter Of Last Name is D [Clear All Filters]
A new state feedback based transient control of PWM AC to DC voltage type converters. Power Electronics, IEEE Transactions on. 10:716–724.
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1995. A new three-phase low THD power supply with high-frequency isolation and 60V/200A regulated DC output. Power Electronics Specialists Conference, 2001. PESC. 2001 IEEE 32nd Annual. 3:1629–1634vol.3.
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2001. {A new three-phase low THD power supply with high-frequency isolation and 60V/200A regulated DC output}. Power Electronics Specialists Conference, 2001. PESC. 2001 IEEE 32nd Annual. 3:1629–1634vol.3.
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2001. New wide input voltage range three-phase unity power factor rectifier formed by integration of a three-switch buck-derived front-end and a DC/DC boost converter output stage. Telecommunications Energy Conference, 2000. INTELEC. Twenty-second International. :461–470.
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2000. {New wide input voltage range three-phase unity power factor rectifier formed by integration of a three-switch buck-derived front-end and a DC/DC boost converter output stage}. Telecommunications Energy Conference, 2000. INTELEC. Twenty-second International. :461–470.
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2000. {Off-grid electricity for developing countries}. IEE Review.
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1999. {Performance enhancement of solar still through efficient heat exchange mechanism – A review}. Applied Thermal Engineering. 114:815–836.
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2017. {Performance enhancement of solar still through efficient heat exchange mechanism – A review}. Applied Thermal Engineering. 114:815–836.
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2017. {Regional Disaster Response Coordination to Support Health Outcomes: Summary of a Workshop Series}. :118.
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2015. {Review and validation of Solar Thermal Electricity potential methodologies}. Energy Conversion and Management. 126:42–50.
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2016. {A Sinusoidal Pulsewidth Modulated Three-Phase AC to DC Converter-Fed DC Motor Drive}. Industry Applications, IEEE Transactions on. IA-21:1394–1408.
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1985. A Sinusoidal Pulsewidth Modulated Three-Phase AC to DC Converter-Fed DC Motor Drive. Industry Applications, IEEE Transactions on. IA-21:1394–1408.
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1985. Soft-switched PWM converter with inductive DC filter. Industry Applications, IEEE Transactions on. 31:293–298.
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1995. {Soft-switched PWM converter with inductive DC filter}. Industry Applications, IEEE Transactions on. 31:293–298.
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1995. {Solar stills: A comprehensive review of designs, performance and material advances}. Renewable and Sustainable Energy Reviews. 63:464–496.
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2016. Stability analysis of high-power DC grids. IEEE Transactions on Industry Applications. 46:584–592.
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2010. {Stability analysis of high-power DC grids}. IEEE Transactions on Industry Applications. 46:584–592.
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2010. Stability evaluation of a DC micro-grid and future interconnection to an AC system. Renewable Energy. 62:649–656.
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2014. {Stability evaluation of a DC micro-grid and future interconnection to an AC system}. Renewable Energy. 62:649–656.
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2014. {Techno-economic assessment of an off-grid PV system for developing regions to provide electricity for basic domestic needs: A 2020-2040 scenario}. Applied Energy.
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2016. {A Three-Phase AC-to-DC Power Transistor Converter-Controlled DC Motor Drive}. Industry Applications, IEEE Transactions on. IA-23:848–854.
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1987. A Three-Phase AC-to-DC Power Transistor Converter-Controlled DC Motor Drive. Industry Applications, IEEE Transactions on. IA-23:848–854.
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1987. {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.
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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.
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1998. 住宅直流供电的可行性探讨 [The DC-HOME Micro-Grid Voltage Value Research]. Mechanical & Electrical Engineering Technology. 8:70–72.
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2014.