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Photovoltaic DC-DC module integrated converter for novel cascaded and bypass grid connection topologies — Design and optimization
137
Citations
4
References
2006
Year
Unknown Venue
EngineeringEnergy ConversionPower Electronics ConverterElectric Power ConversionPower Electronic SystemsPhotovoltaic SystemPower ElectronicsPhotovoltaicsPhoto VoltaicRenewable Energy SystemsCascaded Converter ApplicationPower Electronic DevicesElectrical EngineeringDc MicrogridsSolar PowerModule Integrated ConvertersBuilding-integrated PhotovoltaicsPhotovoltaic Dc-dc ModulePower Inverter
Grid connected Photo Voltaic (PV) inverters fall into three broad categories — Central, String and Module Integrated Converters (MICs). MICs offer many advantages in performance and flexibility, but are at a cost disadvantage. Two alternative novel approaches proposed by the author — cascaded dc-dc MICs and bypass dc-dc MICs — integrate a simple non-isolated intelligent dc-dc converter with each PV module to provide the advantages of dc-ac MICs at a lower cost. A suitable universal 150W 5A dc-dc converter design is presented based on two interleaved MOSFET half bridges. Testing shows Zero Voltage Switching (ZVS) keeps losses under IW for bi-directional power flows up to 15W between two adjacent 12V PV modules for the bypass application, and efficiencies over 94% for most of the operational power range for the cascaded converter application. Based on the experimental results, potential optimizations to further reduce losses are discussed.
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