Analysis and Control of Power Electronic Converters Based on a System Zero Locations Approach
暂无分享,去创建一个
[1] Jian Liu,et al. Analysis of Operating Modes and Output VoltageRipple of Boost DC–DC Convertersand Its Design Considerations , 2008, IEEE Transactions on Power Electronics.
[2] Longya Xu,et al. Dynamic Modeling and Analysis of $Z$ Source Converter—Derivation of AC Small Signal Model and Design-Oriented Analysis , 2007, IEEE Transactions on Power Electronics.
[3] Damien Paire,et al. Experimental evaluation of four-phase floating interleaved boost converter design and control for fuel cell applications , 2013 .
[4] Ramon Vilanova,et al. Control PID robusto: Una visión panorámica , 2011 .
[5] Jesse B. Hoagg,et al. Nonminimum-phase zeros - much to do about nothing - classical control - revisited part II , 2007, IEEE Control Systems.
[6] Helen Liu,et al. Digital Average Current-Mode Control of PWM DC–DC Converters Without Current Sensors , 2010, IEEE Transactions on Industrial Electronics.
[7] Gerardo Espinosa-Pérez,et al. Current‐mode control of DC–DC power converters: a backstepping approach , 2003 .
[8] Ali Davoudi,et al. Multi-Resolution Modeling of Power Electronics Circuits Using Model-Order Reduction Techniques , 2013, IEEE Transactions on Circuits and Systems I: Regular Papers.
[9] R. M. Bass,et al. Integrated design of power stage and controller for switching power supplies , 1996, 5th IEEE Workshop on Computers in Power Electronics.
[10] Carlos Andrés Ramos-Paja,et al. Modeling of Step-up Grid-Connected Photovoltaic Systems for Control Purposes , 2012 .
[11] M Morari,et al. Integrated control and circuit design; an optimization approach applied to the buck converter , 2010, Proceedings of the 2010 American Control Conference.
[12] M. Morari,et al. Constrained Optimal Control of the Step-Down DC–DC Converter , 2008, IEEE Transactions on Power Electronics.
[13] I. Roasto,et al. Efficiency and Voltage Characteristics of the Bi-Directional Current Doubler Rectifier , 2012 .
[14] M. K. Kazimierczuk,et al. Analysis of PWM Z-Source DC-DC Converter in CCM for Steady State , 2012, IEEE Transactions on Circuits and Systems I: Regular Papers.
[15] Wenzhong Gao,et al. Closed-Loop Analysis and Cascade Control of a Nonminimum Phase Boost Converter , 2011, IEEE Transactions on Power Electronics.
[16] Zhang Bo,et al. Analysis of the Stability and Ripple of PSM Converter in DCM by EB Model , 2007, 2007 International Conference on Communications, Circuits and Systems.
[17] Julio E. Normey Rico,et al. Integrated design and control applied to a buck boost converter , 2007, 2007 European Control Conference (ECC).
[18] Luiz A. de S. Ribeiro,et al. Implementation of a High-Efficiency, High-Lifetime, and Low-Cost Converter for an Autonomous Photovoltaic Water Pumping System , 2014 .
[19] Michael Evzelman,et al. Simulation of Hybrid Converters by Average Models , 2014, IEEE Transactions on Industry Applications.
[20] J A Martinez,et al. Definitions and Applications of Dynamic Average Models for Analysis of Power Systems , 2010, IEEE Transactions on Power Delivery.
[21] P. T. Krein,et al. Formulation of PID Control for DC–DC Converters Based on Capacitor Current: A Geometric Context , 2012, IEEE Transactions on Power Electronics.
[22] Carlos Andrés Ramos-Paja,et al. Asymmetrical Interleaved DC/DC Switching Converters for Photovoltaic and Fuel Cell Applications—Part 2: Control-Oriented Models , 2013 .
[23] Robert W. Erickson,et al. Fundamentals of Power Electronics , 2001 .
[24] Jih-Sheng Lai,et al. Current Phase Lead Compensation in Single-Phase PFC Boost Converters With a Reduced Switching Frequency to Line Frequency Ratio , 2007 .
[25] Tsorng-Juu Liang,et al. Analysis of integrated boost-flyback step-up converter , 2005 .
[26] Emmanuel Godoy,et al. Advanced control laws of DC-DC converters based on piecewise affine modelling. Application to a step-down converter , 2014 .