Advanced Modeling and Simulation Techniques for Efficient Digital Control Systems

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1. Verfasser: Dr. Amira S. Khalil and Dr. Liam R. MacLean
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Veröffentlicht: Zenodo 2024
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author Dr. Amira S. Khalil and Dr. Liam R. MacLean
author_facet Dr. Amira S. Khalil and Dr. Liam R. MacLean
contents <p>—This paper presents a dynamic architecture of digital duty-cycle modulation control drivers. Compared to most oversampling digital modulation schemes encountered in industrial electronics, its novelty is founded on a number of relevant merits including; embedded positive and negative feedback loops, internal modulation clock, structural simplicity, elementary building operators, no explicit need of samples of the nonlinear duty-cycle function when computing the switching modulated signal, and minimum number of design parameters. A prototyping digital control driver is synthesized and well tested within MATLAB/Simulink workspace. Then, the virtual simulation results and performance obtained under a sample of relevant instrumentation and control systems are presented, in order to show the feasibility, the reliability, and the versatility of target applications, of the proposed class of low cost and high quality digital control drivers in industrial electronics</p>
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publishDate 2024
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spellingShingle Advanced Modeling and Simulation Techniques for Efficient Digital Control Systems
Dr. Amira S. Khalil and Dr. Liam R. MacLean
Dynamic architecture
virtual simulation
duty-cycle modulation
digital control drivers
industrial electronics.
<p>—This paper presents a dynamic architecture of digital duty-cycle modulation control drivers. Compared to most oversampling digital modulation schemes encountered in industrial electronics, its novelty is founded on a number of relevant merits including; embedded positive and negative feedback loops, internal modulation clock, structural simplicity, elementary building operators, no explicit need of samples of the nonlinear duty-cycle function when computing the switching modulated signal, and minimum number of design parameters. A prototyping digital control driver is synthesized and well tested within MATLAB/Simulink workspace. Then, the virtual simulation results and performance obtained under a sample of relevant instrumentation and control systems are presented, in order to show the feasibility, the reliability, and the versatility of target applications, of the proposed class of low cost and high quality digital control drivers in industrial electronics</p>
title Advanced Modeling and Simulation Techniques for Efficient Digital Control Systems
topic Dynamic architecture
virtual simulation
duty-cycle modulation
digital control drivers
industrial electronics.
url https://doi.org/10.5281/zenodo.19333331