Generalized small signal modeling of coupled inductor based high gain, high efficiency dc-dc converters
暂无分享,去创建一个
[1] J. De Leon-Morales,et al. Modelling and control of a DC-DC multilevel boost converter , 2011 .
[2] Fred C. Lee,et al. High-efficiency, high step-up DC-DC converters , 2003 .
[3] S. K. Jha,et al. Performance Comparison of Different Type of Reduced Order Modeling Methods , 2013, 2013 Third International Conference on Advanced Computing and Communication Technologies (ACCT).
[4] Ali Davoudi,et al. Numerical state-space average-value modeling of PWM DC-DC converters operating in DCM and CCM , 2006, IEEE Transactions on Power Electronics.
[5] Rong-Jong Wai,et al. High step-up converter with coupled-inductor , 2005, IEEE Transactions on Power Electronics.
[6] C. T. Choi,et al. Modeling of an active clamp discontinuous conduction mode flyback converter under variation of operating conditions , 1999, Proceedings of the IEEE 1999 International Conference on Power Electronics and Drive Systems. PEDS'99 (Cat. No.99TH8475).
[7] Paolo Rapisarda,et al. Modeling Approaches for DC–DC Converters With Switched Capacitors , 2015, IEEE Transactions on Industrial Electronics.
[8] Rong-Jong Wai,et al. High-Efficiency DC-DC Converter With High Voltage Gain and Reduced Switch Stress , 2007, IEEE Transactions on Industrial Electronics.
[9] R. Gules,et al. Reduced-Order Model and Control Approach for the Boost Converter With a Voltage Multiplier Cell , 2013, IEEE Transactions on Power Electronics.
[10] Alex Q. Huang,et al. A High Step-Up Three-Port DC–DC Converter for Stand-Alone PV/Battery Power Systems , 2013, IEEE Transactions on Power Electronics.
[11] Peng Xu,et al. Performance improvements of interleaving VRMs with coupling inductors , 2001 .
[12] Ching-Tsai Pan,et al. A High-Efficiency High Step-Up Converter With Low Switch Voltage Stress for Fuel-Cell System Applications , 2010, IEEE Transactions on Industrial Electronics.
[13] Hengsi Qin,et al. Generalized Average Modeling of Dual Active Bridge DC–DC Converter , 2012, IEEE Transactions on Power Electronics.
[14] Norihisa Komoda,et al. A Petri Net-Based Controller for Flexible and Maintainable Sequence Control and its Applications in Factory Automation , 1986, IEEE Transactions on Industrial Electronics.
[15] Vivek Agarwal,et al. Design and Analysis of a High-Efficiency DC–DC Converter With Soft Switching Capability for Renewable Energy Applications Requiring High Voltage Gain , 2016, IEEE Transactions on Industrial Electronics.
[16] Vivek Agarwal,et al. Generalized Small Signal Modeling of Coupled-Inductor-Based High-Gain High-Efficiency DC–DC Converters , 2017 .
[17] V. Agarwal,et al. A novel, high efficiency, high gain, front end DC-DC converter for low input voltage solar photovoltaic applications , 2012, IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society.
[18] Joeri Van Mierlo,et al. Analysis, Modeling, and Implementation of a Multidevice Interleaved DC/DC Converter for Fuel Cell Hybrid Electric Vehicles , 2012, IEEE Transactions on Power Electronics.
[19] V. Krishnamurthy,et al. Model reduction using the Routh stability criterion , 1978 .
[20] Mummadi Veerachary. Analysis of Fourth-Order DC–DC Converters: A Flow Graph Approach , 2008, IEEE Transactions on Industrial Electronics.
[21] Vivek Agarwal,et al. PV Fed high efficiency, high voltage gain DC-DC converter for micro-inverter applications , 2013, 2013 IEEE 39th Photovoltaic Specialists Conference (PVSC).
[22] Ching-Tsai Pan,et al. High-Efficiency Modular High Step-Up Interleaved Boost Converter for DC-Microgrid Applications , 2012, IEEE Transactions on Industry Applications.
[23] A. Bakhshai,et al. Analysis of a Fifth-Order Resonant Converter for High-Voltage DC Power Supplies , 2013, IEEE Transactions on Power Electronics.
[24] Marina Sanz,et al. Black-Box Behavioral Modeling and Identification of DC–DC Converters With Input Current Control for Fuel Cell Power Conditioning , 2014, IEEE Transactions on Industrial Electronics.