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Journal ArticleDOI

A Design Method for PI-like Fuzzy Logic Controllers for DC–DC Converter

TLDR
A novel design procedure of proportional and integral (Pl)-like fuzzy logic controller for DC-DC converters that integrates linear control techniques with fuzzy logic results in a nonlinear controller with improved performance over linear PI controllers.
Abstract
This paper proposes a novel design procedure of proportional and integral (Pl)-like fuzzy logic controller (FLC) for DC-DC converters that integrates linear control techniques with fuzzy logic. The design procedure allows the small signal model of the converter and linear control design techniques to be used in the initial stages of FLC design. This simplifies the small signal design and the stability assessment of the FLC. By exploiting the fuzzy logic structure of the controller, heuristic knowledge is incorporated in the design, which results in a nonlinear controller with improved performance over linear PI controllers.

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Citations
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Journal ArticleDOI

Evaluation of DSP-Based PID and Fuzzy Controllers for DC–DC Converters

TL;DR: In this paper, digital proportional-integral-derivative (PID)-type and fuzzy-type controllers are compared for application to the buck and boost dc-dc converters.
Journal ArticleDOI

Robust LQR Control for PWM Converters: An LMI Approach

TL;DR: A convex model of converter dynamics is obtained taking into account uncertainty of parameters, and a new robust control method for dc-dc converters is derived using linear matrix inequalities (LMIs), compared with classical LQR control when designing a boost regulator.
Journal ArticleDOI

Recent Developments in Digital Control Strategies for DC/DC Switching Power Converters

TL;DR: In this article, an overview of recent advances in digital control of low-to medium-power dc/dc switching converters is presented, including applications such as online efficiency optimization, controller autotuning and specialized nonlinear control.
Journal ArticleDOI

A Hybrid Control Algorithm for Voltage Regulation in DC–DC Boost Converter

TL;DR: A new switching control algorithm based on state trajectory approximation is proposed to regulate the output voltage of a representative second-order DC-DC converter - the boost converter to trap the system into a stable limit cycle while ensuring the required voltage regulation.
Journal ArticleDOI

Active Disturbance Rejection Control for a Flywheel Energy Storage System

TL;DR: This paper presents the application of the Active Disturbance Rejection Control Technique (ADRCT) to improve the performance of a Flywheel Energy Storage System (FESS) and shows that the new controller is more robust and more adaptive.
References
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Journal ArticleDOI

A and V.

Book

Fundamentals of Power Electronics

TL;DR: Converters in Equilibrium, Steady-State Equivalent Circuit Modeling, Losses, and Efficiency, and Power and Harmonics in Nonsinusoidal Systems.
Book

Fuzzy Control

TL;DR: Drawing on their extensive experience working with industry on implementations, Kevin Passino and Stephen Yurkovich have written an excellent hands-on introduction for professionals and educators interested in learning or teaching fuzzy control.
Book

An Introduction to Fuzzy Control

TL;DR: Fuzzy controllers are a class of knowledge based controllers using artificial intelligence techniques with origins in fuzzy logic that can be found either as stand-alone control elements or as int ...
Journal ArticleDOI

A DSP-based active disturbance rejection control design for a 1-kW H-bridge DC-DC power converter

TL;DR: A new control algorithm based on the active disturbance rejection concept is developed to cope with the highly nonlinear dynamics of the converter and the disturbances and results show the advantages and flexibilities of the new control method for the H-bridge dc-dc power converter.
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