Performance of the Boost Converter Controlled with ZAD to Regulate DC Signals

Trujillo, Simeón Casanova and Candelo-Becerra, John E. and Hoyos, Fredy E. (2021) Performance of the Boost Converter Controlled with ZAD to Regulate DC Signals. Computation, 9 (9). p. 96. ISSN 2079-3197

[thumbnail of computation-09-00096-v2.pdf] Text
computation-09-00096-v2.pdf - Published Version

Download (6MB)

Abstract

This paper presents the performance of a boost converter controlled with a zero average dynamics technique to regulate direct current signals. The boost converter is modeled in a compact form, and a variable change is performed to depend only on the γ parameter. A new sliding surface is proposed, where it is possible to regulate both the voltage and the current with low relative errors with respect to the reference signals. It is analytically demonstrated that the approximation of the switching surface by a piecewise linear technique is efficient in controlling the system. It is shown numerically that for certain operating conditions, the system is evolved into a chaotic attractor. The zero average dynamics technique implemented in the boost converter has good regulation, due to the presence of zones in the bi-parametric space. Furthermore, the zero average dynamics technique regulates the voltage well and presents a chaotic attractor with low steady-state error.

Item Type: Article
Subjects: ArticleGate > Computer Science
Depositing User: Managing Editor
Date Deposited: 01 Dec 2022 11:23
Last Modified: 24 Oct 2024 03:56
URI: http://ebooks.pubstmlibrary.com/id/eprint/1244

Actions (login required)

View Item
View Item