Fault Detection using Indirect DC Link Current Measurement Technique in Multiphase DC Converter with Coupled Inductor
2021 23rd European Conference on Power Electronics and Applications (EPE'21 ECCE Europe): Conference Proceedings 2021
Artūrs Bogdanovs, Oskars Krievs, Johannes Pforr

Here, an indirect DC link current measurement technique is proposed and evaluated in terms of fault detection capability in multiphase converter with highly magnetically coupled inductor and distributed DC link capacitors. The indirect DC link current sensing circuit parameter modification is introduced and the measurement accuracy improvements are assessed in comparison with previously proposed results. A novel approach for converter typical fault detection and identification uses the idea, that the DC link current waveforms are acquired using converter switching functions and hence, reflect the occurring switch faults. Most common converter failure modes are acquired experimentally to analyze their influence on the DC link current waveforms and assess their detection capabilities. The derived fault detection algorithms are verified under different converter operating conditions by evaluating the time needed for failure identification. The proposed method shows adequate phase current measurement accuracy and fault identification capabilities within a reasonable timeframe; therefore, it can be used for current balancing controller implementation, diagnostic purposes and further design of converter fault-tolerant operation modes.


Keywords
Multiphase Converter, Faults, Measurements, Coupled inductor, Failure modes
DOI
10.23919/EPE21ECCEEurope50061.2021.9570190
Hyperlink
https://ieeexplore.ieee.org/document/9570190

Bogdanovs, A., Krievs, O., Pforr, J. Fault Detection using Indirect DC Link Current Measurement Technique in Multiphase DC Converter with Coupled Inductor. In: 2021 23rd European Conference on Power Electronics and Applications (EPE'21 ECCE Europe): Conference Proceedings, Belgium, Ghent, 6-10 September, 2021. Piscataway: IEEE, 2021, pp.2890-2899. ISBN 978-1-6654-3384-6. e-ISBN 978-9-0758-1537-5.

Publication language
English (en)
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