DocumentCode :
2363725
Title :
Dynamic behaviour of PI controlled class-E resonant converter for step-down applications using piezoelectric transformers
Author :
Nittayarumphon, Sadachai ; Bisogno, Fabio ; Radecker, Matthias ; Knoll, Alois ; Carazo, A.V. ; Riedlhammer, Anton
Author_Institution :
Frauhofer-Institut fur Autonome Intelligence Syst.
fYear :
2005
fDate :
11-14 Sept. 2005
Abstract :
The target of a power converter controller using a piezoelectric transformer (PT) designed as a resonant circuit, as in half-bridge or class-E topology is to maintain constant output voltage or current and to achieve the ZVS (zero-voltage-switching) condition over the operation range. In the presented class-E application, the design of the closed-loop feedback is achieved for 0-3 Watts at 6 V/DC output with a varied output load between 12 Omega-1.2 kOmega, at input voltage range of 85-260 V/AC using different PT samples, at switching frequency range of 145 to 180 kHz, with the concept of PI control. The transient responses of the controller are presented with the jump of load and input voltage. In addition, the transfer function of class-E from original 4th order transfer function is linearized to be 1st order linear function as a function of the output current from the switching frequency and the varied input voltage. The Laplace transformation of the class-E converter with feed back PI control is analyzed using a linear model method. The stability condition of the closed loop control is analyzed with the Routh-Hurwitz stability criterion method
Keywords :
Laplace transforms; PI control; bridge circuits; closed loop systems; control system synthesis; network topology; piezoelectric materials; power transformers; resonant power convertors; switching convertors; transfer functions; transient response; zero voltage switching; 12 to 1.2 ohm; 145 to 180 kHz; Laplace transformation; PI control; Routh-Hurwitz stability criterion method; ZVS condition; class-E converter topology; closed-loop feedback; dynamic behaviour; half-bridge topology; linear model method; piezoelectric transformers; power converter controller; resonant circuit; step-down applications; transfer function; transient responses; zero-voltage-switching; Circuit topology; Pi control; RLC circuits; Resonance; Stability analysis; Stability criteria; Switching frequency; Transfer functions; Transformers; Voltage control; Converter circuit; Power supply; Regulation; Resonant Converter; ZVS converters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics and Applications, 2005 European Conference on
Conference_Location :
Dresden
Print_ISBN :
90-75815-09-3
Type :
conf
DOI :
10.1109/EPE.2005.219679
Filename :
1665869
Link To Document :
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