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Application of Analytic Signal and Smooth Interpolation in Pulsewidth Modulation for Conventional Matrix Converters

Szczepankowski, Pawel; Wheeler, Patrick; Bajdecki, Tomasz

Application of Analytic Signal and Smooth Interpolation in Pulsewidth Modulation for Conventional Matrix Converters Thumbnail


Authors

Pawel Szczepankowski

Tomasz Bajdecki



Abstract

This article proposes an alternative and novel approach to the pulsewidth modulation (PWM) duty cycles computation for conventional matrix converters (CMC) fed by balanced, unbalanced, or nonsinusoidal ac voltage sources. The presented solution simplifies the prototyping of direct modulation algorithms. PWM duty cycles are calculated faster by the smooth interpolation technique, using only vector coordinates, without trigonometric functions, and angles. Both input voltages and output reference voltages are expressed by analytic signals in the proposed direct modulation. Input voltages are represented by the rotating vector collection in the 2-D Cartesian coordinate system. All reference output voltages are located inside the triangular surface, named here as the voltage synthesis field, formed by these rotating vectors. A certain degree of reference signals placement freedom allows us to maximize the voltage transfer ratio to 0.866 with less switching compared to the optimum-Venturini direct method. The proposed solution was verified by simulations and experiments for CMC3 × k. The comparison with the optimum-Venturini modulation is included. The proposed PWM duty cycle computation approach can also be applied to multiphase CMC converters for any number of inputs as well as outputs.

Citation

Szczepankowski, P., Wheeler, P., & Bajdecki, T. (2020). Application of Analytic Signal and Smooth Interpolation in Pulsewidth Modulation for Conventional Matrix Converters. IEEE Transactions on Industrial Electronics, 67(12), 10011-10023. https://doi.org/10.1109/tie.2019.2956391

Journal Article Type Article
Online Publication Date Dec 19, 2019
Publication Date 2020-12
Deposit Date Feb 4, 2025
Publicly Available Date Feb 6, 2025
Journal IEEE Transactions on Industrial Electronics
Print ISSN 0278-0046
Electronic ISSN 1557-9948
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 67
Issue 12
Pages 10011-10023
DOI https://doi.org/10.1109/tie.2019.2956391
Keywords Control and Systems Engineering; Electrical and Electronic Engineering
Public URL https://nottingham-repository.worktribe.com/output/4869642
Publisher URL https://ieeexplore.ieee.org/document/8937046

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