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Proceedings ArticleDOI

Damped input filter design of matrix converter

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TLDR
In this article, an improved input filter topology to increase the damping factor is presented, and damping resistance parameter selection method of the input filter is presented based on frequency response approach to avoid the current spike at the start-up process.
Abstract
This paper deals with the input filter design of matrix converter Regard the matrix converter as a buck type PWM rectifier in the input side, the transfer function of input current using LC input filter is deduced The parameter selection approach for the capacitor and inductor is presented It has been verified that when LC circuit is adopted in the input filter, the input current will oscillate near the LC resonant frequency in both steady state and start-up process for the very low damping factor, and then the input current waveforms will be distorted An improved input filter topology to increase the damping factor is then presented, and the damping resistance parameter selection method of the input filter is presented based on frequency response approach To avoid the current spike at the start-up process, a start-up circuit is then proposed The improved input filter has been tested on a 55kW matrix converter prototype and good performances are achieved

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Citations
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A Review of Control and Modulation Methods for Matrix Converters

TL;DR: It is concluded that the control strategy has a significant impact on the resonance of the MC input filter.
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Implementation of Voltage-Based Commutation in Space-Vector-Modulated Matrix Converter

TL;DR: A novel voltage-based commutation (VBC) strategy without explicit input-voltage measurement is proposed in this paper, and all the commutations in the matrix converter can be achieved by two-step VBC.
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Systematic Input Filter Design of Matrix Converter by Analytical Estimation of RMS Current Ripple

TL;DR: A simple closed-form analytical expression for the RMS input current ripple injected by the MC is presented, which shows the variation with load power factor and is independent of the output frequency.
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A Single-Stage Matrix-Based Isolated Three-Phase AC–DC Converter With Novel Current Commutation

TL;DR: In this paper, an isolated single-stage three-phase ac-dc converter is proposed for aircraft system in which a space vector modulation-based switching scheme is proposed and digitally implemented for superior input power quality and improved power conversion efficiency.
Journal ArticleDOI

A Matrix-Based Nonisolated Three-Phase AC–DC Rectifier With Large Step-Down Voltage Gain

TL;DR: In this paper, a matrix-based non-isolated three-phase ACDC converter with a current-doubler rectifier (CDR) circuit is presented. But, the proposed converter is not suitable for high-frequency ac voltages, as it is severely underutilized by operating at lower modulation index.
References
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Journal ArticleDOI

Space vector modulated three-phase to three-phase matrix converter with input power factor correction

TL;DR: In this article, the authors present a space vector modulated three-phase-to-three-phase matrix converter with input power factor correction, which is theoretically derived from the desired average transfer functions, using the indirect transfer function approach.
Journal ArticleDOI

A new matrix converter motor (MCM) for industry applications

TL;DR: This paper shows how the matrix converter disadvantages-the lack of bidirectional power devices, the lower voltage transfer ratio, and the overvoltages caused by the input filter during power-up-that have delayed the industrial implementation have been overcome.
Journal ArticleDOI

Optimised input filter design and low-loss switching techniques for a practical matrix converter

TL;DR: In this article, the viability of the matrix converter depends to a large extent on the size and cost of the input filter components required to meet international power quality standards, and the feasibility of matrix converter designs is examined and guidelines established.
Journal ArticleDOI

A 150 kVA vector controlled matrix converter induction motor drive

TL;DR: In this article, the authors describe the design, construction, and testing of a 150kVA closed-loop vector-controlled matrix converter induction motor drive for electric vehicle applications, primarily for motor control.
Journal ArticleDOI

Large-Signal Model for the Stability Analysis of Matrix Converters

TL;DR: A theoretical analysis of MCs based on a large-signal model is presented with the aim to show which parameters may affect the stability and to explain the reason of this phenomenon.
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