Article | Proceedings of the 10<sup>th</sup> International Modelica Conference; March 10-12; 2014; Lund; Sweden | Implementation of a Multi-Level Power Electronic Inverter Library in Modelica
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Title:
Implementation of a Multi-Level Power Electronic Inverter Library in Modelica
Author:
Christopher Hill: University of Nottingham, Aerospace Technology Centre, Innovation Park, Nottingham, UK Paolo Giangrande: University of Nottingham, Aerospace Technology Centre, Innovation Park, Nottingham, UK Chris Gerada: University of Nottingham, Aerospace Technology Centre, Innovation Park, Nottingham, UK Serhiy Bozhko: University of Nottingham, Aerospace Technology Centre, Innovation Park, Nottingham, UK
DOI:
10.3384/ecp14096523
Download:
Full text (pdf)
Year:
2014
Conference:
Proceedings of the 10th International Modelica Conference; March 10-12; 2014; Lund; Sweden
Issue:
096
Article no.:
055
Pages:
523-532
No. of pages:
10
Publication type:
Abstract and Fulltext
Published:
2014-03-10
ISBN:
978-91-7519-380-9
Series:
Linköping Electronic Conference Proceedings
ISSN (print):
1650-3686
ISSN (online):
1650-3740
Publisher:
Linköping University Electronic Press; Linköpings universitet


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This paper presents a newly developed Power Electronic Inverter library in Modelica. The library utilises a multi-level approach with increasing model complexity at progressively higher levels. All levels are fully interchangeable so as to provide a flexible library able to be utilised for investigation at single or multiple levels of complexity. Within this interchangeable multi-level approach; there are two key attributes which are implemented into this new library. The first is the ability to include losses between the input and output of the Power Electronic Inverter. This is implemented so that the losses are included irrespective of the direction of power flow. Secondly; this library also provides the ability to trigger single or multiple open and short circuit faults within the Inverter. The library therefore provides an extremely useful tool able to compare system response under a variety of operational scenarios.

Keywords: Inverter; Multi-Level; Losses; Faults; Actuator

Proceedings of the 10th International Modelica Conference; March 10-12; 2014; Lund; Sweden

Author:
Christopher Hill, Paolo Giangrande, Chris Gerada, Serhiy Bozhko
Title:
Implementation of a Multi-Level Power Electronic Inverter Library in Modelica
DOI:
http://dx.doi.org/10.3384/ecp14096523
References:

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[3] A. Boglietti et al. ‚ÄúThe safety critical electric machines and drives in the more electric aircraft: A survey‚ÄĚ, in IEEE Industrial Electronics Conference, 2009.

[4] J. V. Gragger, et al. ‚ÄúThe SmartElectricDrives Library ‚Äď powerful models for fast simulations of electric drives,‚ÄĚ Proceedings of the 5th International Modelica Conference, pp. 571‚Äď577, 2006.

[5] R. Rai, et al. "Simulation-Based Design of Aircraft Electrical Power Systems." Proceedings of the 8th Modelica Conference. 2011.

[6] Funded by the European Commission within the Seventh Framework Program under grant FP7-284916 http://www.actuation2015.eu/

[7] Van der Linden, F., Schlegel, C., Christmann, M., Regula, G., Hill, C.I., Giangrande, P., Mare, J.C., Ega√Īa, I. ‚ÄúImplementation of a Modelica Library for Simulation of Electromechanical Actuators for Aircraft and Helicopters.‚ÄĚ Proceedings of the 10th International Modelica Conference. 2014.

[8] Van der Linden, F. “General fault triggering architecture to trigger model faults in Modelica using a standardized blockset. Proceedings of the 10th Modelica conference. 2014.

Proceedings of the 10th International Modelica Conference; March 10-12; 2014; Lund; Sweden

Author:
Christopher Hill, Paolo Giangrande, Chris Gerada, Serhiy Bozhko
Title:
Implementation of a Multi-Level Power Electronic Inverter Library in Modelica
DOI:
http://dx.doi.org/10.3384/ecp14096523
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