Generic pulse width modulation model, based on generalized inverses and applied to voltage source inverters
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Published:2019-03-04
Issue:2
Volume:38
Page:845-861
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ISSN:0332-1649
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Container-title:COMPEL - The international journal for computation and mathematics in electrical and electronic engineering
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language:en
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Short-container-title:COMPEL
Author:
Paul-Etienne Vidal,Cailhol Simon,Rotella Frédéric,Fadel Maurice
Abstract
Purpose
This paper aims to develop a method for a unified model of pulse width modulation (PWM) voltage source inverters (VSI). This generic method, based on a common and easy-to-use carrier-based modulation, allows to generate the exhaustive solution set for a given PWM-VSI.
Design/methodology/approach
The use of the generalized inverse theory is developed to express the PWM solution set for the duty cycle. Indeed, the infinite number of PWM solutions is demonstrated. To explore this solution set, the unified model described exhibits degrees of freedom. The admissible margins to set the degree of freedom are highlighted. Some experimental results are presented.
Findings
It is demonstrated how the degree of freedom can be directly connected with efficiency indicators such as common mode voltage, inverter linearity and switching losses. The expression of the PWM solution set boundaries is clearly expressed.
Research limitations/implications
Further studies should explore how the degree of freedom can be connected with parameters associated with the current (and not the voltage as described in this paper).
Practical implications
The paper includes implications for the development of a more generic approach for PWM multilevel VSI.
Originality/value
This paper fulfils a mathematical frame to ease the expression of PWM scheme.
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications
Reference18 articles.
1. The moore of the moore-penrose inverse;Proceeding The Electronic Journal of Linear Algebra,2002
2. Optimal regular-sampled pwm inverter control techniques;IEEE Transactions on Industrial Electronics,2007
Cited by
1 articles.
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