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Delta-Sigma Modulation Based Common-Mode Voltage Elimination in Direct Matrix Converter

Mir, Tabish Nazir; Singh, Bhim; Bhat, Abdul Hamid

Authors

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TABISH MIR Tabish.Mir@nottingham.ac.uk
Assistant Professor

Bhim Singh

Abdul Hamid Bhat



Abstract

The direct matrix converter (DMC) offers a compact and robust solution over typical ac-dc-ac converter, by enabling direct ac-ac power conversion without any energy storage requirements. Moreover, it offers enhanced source current quality, innate bidirectionality and power factor correction capabilities. Its industrial suitability is further advocated by the elimination of common-mode voltage through the DMC topology. Space vector modulation and model predictive control based approach to common-mode voltage elimination in matrix converter, are previously proposed. This article proposes the delta-sigma modulation for common-mode voltage elimination in matrix converter, which is computationally less cumbersome and performs better as compared to previously documented methods. This method utilizes only six most optimum states of DMC that yield zero common-mode voltage, and performs load voltage and source current control by computing each error variable (delta), integrating it (sigma) and further minimizing it within a hysteresis band. Source current control necessitates load current estimation, which is done through predictive model of the load, hence eliminating load current sensors.

Journal Article Type Article
Acceptance Date Apr 8, 2020
Online Publication Date Apr 16, 2020
Publication Date Apr 16, 2020
Deposit Date Sep 7, 2023
Journal IEEE Transactions on Industrial Informatics
Print ISSN 1551-3203
Electronic ISSN 1941-0050
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 17
Issue 2
Pages 1048-1057
DOI https://doi.org/10.1109/TII.2020.2987918
Keywords Electrical and Electronic Engineering; Computer Science Applications; Information Systems; Control and Systems Engineering
Public URL https://nottingham-repository.worktribe.com/output/23489007
Publisher URL https://ieeexplore.ieee.org/document/9069464