Generalized Averaging Method for Power Electronics Modeling from DC to above Half the Switching Frequency

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Hongchang, Wang, Kangping, Fang, Jingyang, Chen, Wenjie, Yang, Xu
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929401776570368
author Li, Hongchang
Wang, Kangping
Fang, Jingyang
Chen, Wenjie
Yang, Xu
author_facet Li, Hongchang
Wang, Kangping
Fang, Jingyang
Chen, Wenjie
Yang, Xu
contents Modeling power electronic converters at frequencies close to or above half the switching frequency has been difficult due to the time-variant and discontinuous switching actions. This paper uses the properties of moving Fourier coefficients to develop the generalized averaging method, breaking though the limit of half the switching frequency. The paper also proposes the generalized average model for various switching signals, including pulse-width modulation (PWM), phase-shift modulation, pulse-frequency modulation (PFM), and state-dependent switching signals, so that circuits and modulators/controllers can be modeled separately and combined flexibly. Using the Laplace transform of moving Fourier coefficients, the coupling of signals and their sidebands at different frequencies is clearly described as the coupling of moving Fourier coefficients at the same frequency in a linear time-invariant system framework. The modeling method is applied to a PWM controlled boost converter, a V2 constant on-time controlled buck converter, and a PFM controlled LLC converter, for demonstration and validation. Experimental results of the converters in different operating modes show that the proposed models have higher accuracy than exiting models, especially in the frequency range close to or above half the switching frequency. The developed method can be applied to almost all types of power electronic converters.
format Preprint
id arxiv_https___arxiv_org_abs_2406_18935
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Generalized Averaging Method for Power Electronics Modeling from DC to above Half the Switching Frequency
Li, Hongchang
Wang, Kangping
Fang, Jingyang
Chen, Wenjie
Yang, Xu
Systems and Control
Modeling power electronic converters at frequencies close to or above half the switching frequency has been difficult due to the time-variant and discontinuous switching actions. This paper uses the properties of moving Fourier coefficients to develop the generalized averaging method, breaking though the limit of half the switching frequency. The paper also proposes the generalized average model for various switching signals, including pulse-width modulation (PWM), phase-shift modulation, pulse-frequency modulation (PFM), and state-dependent switching signals, so that circuits and modulators/controllers can be modeled separately and combined flexibly. Using the Laplace transform of moving Fourier coefficients, the coupling of signals and their sidebands at different frequencies is clearly described as the coupling of moving Fourier coefficients at the same frequency in a linear time-invariant system framework. The modeling method is applied to a PWM controlled boost converter, a V2 constant on-time controlled buck converter, and a PFM controlled LLC converter, for demonstration and validation. Experimental results of the converters in different operating modes show that the proposed models have higher accuracy than exiting models, especially in the frequency range close to or above half the switching frequency. The developed method can be applied to almost all types of power electronic converters.
title Generalized Averaging Method for Power Electronics Modeling from DC to above Half the Switching Frequency
topic Systems and Control
url https://arxiv.org/abs/2406.18935