DocumentCode
4768
Title
Open-Circuit Fault Detection and Diagnosis in Matrix Converters
Author
Brunson, Christopher ; Empringham, Lee ; de Lillo, Liliana ; Wheeler, Pat ; Clare, Jon
Author_Institution
Fac. of Eng., Univ. of Nottingham, Nottingham, UK
Volume
30
Issue
5
fYear
2015
fDate
May-15
Firstpage
2840
Lastpage
2847
Abstract
With the increased use of power electronics in aerospace, automotive, industrial, and energy generation sectors, the demand for highly reliable and power dense solutions has increased. Matrix converters become attractive when taking into account demands for high reliability and high power density. With their lack of large bulky dc-link capacitors, high-power densities are possible with the capability to operate with high ambient temperatures. When a power converter needs high reliability, under tight weight and volume constraints, it is often not possible to have an entirely redundant system. Taking into account these constraints, it is desirable that the power converter continue to operate even under faulty conditions, albeit with diminished performance in some regard. This paper presents an open-circuit switch fault detection and diagnosis system for matrix converters, which has been experimentally validated. The presented system requires no load models, averaging windows or additional sensors, this makes the proposed method fast and low cost.
Keywords
fault diagnosis; matrix convertors; power convertors; power electronics; reliability; aerospace sectors; automotive sectors; dc-link capacitors; energy generation sectors; high-power densities; industrial sectors; matrix converters; open-circuit fault detection; open-circuit fault diagnosis; power converter; power electronics; reliability; Circuit faults; Clamps; Fault detection; Matrix converters; Modulation; Switches; Switching circuits; AC-AC power conversion; AC???AC power conversion; Fault diagnosis; fault diagnosis;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2014.2364152
Filename
6930819
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