DocumentCode :
2887164
Title :
Using RC type damping to eliminate right-half-plane zeros in high step-up DC-DC converter with diode-capacitor network
Author :
Yan Zhang ; Jinjun Liu ; Xiaolong Ma
Author_Institution :
Dept. of Electr. Eng., Xi´an Jiao Tong Univ., Xi´an, China
fYear :
2013
fDate :
3-6 June 2013
Firstpage :
59
Lastpage :
65
Abstract :
The novel DC-DC converter composed of an X-shape diode-capacitor network provides a simple solution for high step-up power conversion in renewable energy applications. With regard to the uni-directional power flow of the diodes, two capacitors are naturally charged in parallel, and discharged in series. Thus, high voltage gain is achieved without extreme large duty ratio. Furthermore, the voltage stress of switching devices is reduced to a large extent. This paper makes detailed transient modeling of this topology through small-signal analysis and reveals the serious influence of non-minimum-phase system in high voltage gain application. To achieve good dynamic performance, RC type damping network is applied to eliminate the right-half-plane zeroes. Based on the model, advanced voltage loop feedback control algorithms for improving steady and transient performance is also presented. All the theoretical findings and design approaches are finally verified by simulations results. With some slight modification on the existing circuit, the new converter is very promising in renewable energy application.
Keywords :
DC-DC power convertors; control system synthesis; feedback; load flow; renewable energy sources; switching convertors; voltage control; RC type damping network; X-shape diode-capacitor network; advanced voltage loop feedback control algorithms; design approaches; diode-capacitor network; dynamic performance; high step-up dc-dc converter; high voltage gain application; nonminimum-phase system; renewable energy applications; right-half-plane zeros elimination; small-signal analysis; steady performance; switching devices; theoretical findings; transient performance; unidirectional power flow; voltage stress; Analytical models; Couplings; Diode-capaitor network; Gain scheduling; High step-up; RC type damping; Right-half-plane zero;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
ECCE Asia Downunder (ECCE Asia), 2013 IEEE
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4799-0483-9
Type :
conf
DOI :
10.1109/ECCE-Asia.2013.6579074
Filename :
6579074
Link To Document :
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