Analysis of CLL Voltage-Output Resonant Converters Using Describing Functions
A new ac equivalent circuit for the CLL voltage-output resonant converter is presented, that offers improved accuracy compared with traditional FMA-based techniques. By employing describing function techniques, the nonlinear interaction of the parallel inductor, rectifier and load is replaced by a c...
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Published in | IEEE transactions on power electronics Vol. 23; no. 4; pp. 1772 - 1781 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York, NY
Institute of Electrical and Electronics Engineers
01.07.2008
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
Online Access | Get full text |
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Abstract | A new ac equivalent circuit for the CLL voltage-output resonant converter is presented, that offers improved accuracy compared with traditional FMA-based techniques. By employing describing function techniques, the nonlinear interaction of the parallel inductor, rectifier and load is replaced by a complex impedance, thereby facilitating the use of ac equivalent circuit analysis methodologies. Moreover, both continuous and discontinuous rectifier-current operating conditions are addressed. A generic normalized analysis of the converter is also presented. To further aid the designer, error maps are used to demonstrate the boundaries for providing accurate behavioral predictions. A comparison of theoretical results with those from simulation studies and experimental measurements from a prototype converter, are also included as a means of clarifying the benefits of the proposed techniques. [PUBLICATION ABSTRACT] |
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AbstractList | A new ac equivalent circuit for the CLL voltage-output resonant converter is presented, that offers improved accuracy compared with traditional FMA-based techniques. By employing describing function techniques, the nonlinear interaction of the parallel inductor, rectifier and load is replaced by a complex impedance, thereby facilitating the use of ac equivalent circuit analysis methodologies. Moreover, both continuous and discontinuous rectifier-current operating conditions are addressed. A generic normalized analysis of the converter is also presented. To further aid the designer, error maps are used to demonstrate the boundaries for providing accurate behavioral predictions. A comparison of theoretical results with those from simulation studies and experimental measurements from a prototype converter, are also included as a means of clarifying the benefits of the proposed techniques. [PUBLICATION ABSTRACT] |
Author | GOULD, Christopher R GILBERT, Adam J BINGHAM, Christopher M FOSTER, Martin P STONE, David A |
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Keywords | Rectifier Power converter DC-DC power conversion Prototype Error estimation Resonant circuit Theoretical study Power electronics Inductor Modeling Operating conditions Voltage converter Complex impedance Discontinuous mode Behavioral analysis Network analysis Energy conversion Equivalent circuit System simulation Resonant power convertors Mathematical model resonant power conversion Comparative study |
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SubjectTerms | Applied sciences Circuit properties Convertors Diodes Electric, optical and optoelectronic circuits Electrical engineering. Electrical power engineering Electrical machines Electronic circuits Electronics Exact sciences and technology Magnetic devices Power electronics, power supplies Printed circuit boards Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices Signal convertors Simulation Studies |
Title | Analysis of CLL Voltage-Output Resonant Converters Using Describing Functions |
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