Title
Adaptive Nonlinear Compensation For Asymmetrical Half Bridge Dc-Dc Converters
Abstract
Asymmetrical half-bridge dc-dc converter has favorable features, which allow the converter to operate at higher frequencies with higher power density. However, asymmetrical half bridge dc-dc converter displays nonlinear dc gain variation with input voltage and duty cycle. The conventional compensator design is based on a small-signal transfer function of power stage and worst case has to be considered in the closed-loop design. With the variation of input line, the system loop gain deviates from the nominal designed trajectory, and correspondingly, the system bandwidth, phase margin and gain margin are going to vary with input voltage line. As a result, the system steady-state and dynamic performance are affected as well. This paper proposes an adaptive nonlinear compensation approach to adjust the system loop gain dynamically and thus achieve unified system loop gain, bandwidth and performance. The adaptive digital compensation algorithm is simulated and verified based on PSIM simulation software. © 2006 IEEE.
Publication Date
10-13-2006
Publication Title
Conference Proceedings - IEEE Applied Power Electronics Conference and Exposition - APEC
Volume
2006
Number of Pages
731-736
Document Type
Article; Proceedings Paper
Personal Identifier
scopus
Copyright Status
Unknown
Socpus ID
33749527750 (Scopus)
Source API URL
https://api.elsevier.com/content/abstract/scopus_id/33749527750
STARS Citation
Wen, Yangyang; Xiao, Shangyang; Jin, Yufang; and Batarseh, Issa, "Adaptive Nonlinear Compensation For Asymmetrical Half Bridge Dc-Dc Converters" (2006). Scopus Export 2000s. 8165.
https://stars.library.ucf.edu/scopus2000/8165