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Modeling and characterization of PCCM Buck-Boost converter based on R-L fractional order definition
J
C
DOI:10.1587/elex.23.20250330.png)
Abstract
En 中文
In recent years, fractional calculus has been used as a novel modeling tool by many converters. This paper studies the modeling of a pseudo-continuous conduction Buck-Boost converter based on the R-L fractional definition and the state-space averaging method. The expressions of DC static operating point, small signal transfer function and inductor current ripple are derived. It is found that compared with the Caputo fractional-order, the DC static operating point of the R-L fractional-order is not only related to the duty cycle, but also affected by the inductance and capacitance order and load. Finally, a fractional order model of PCCM Buck-Boost converter is built to verify the accuracy of the model. The results show that the fractional-order model can describe the operating characteristics of the Buck-Boost converter more accurately.
Keywords:
Buck-Boost converter
PCCM
R-L fractional
Journal
IF:
0.7
Papers:
204
Citations:
1.6K
