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Title
Power-Electronic-Based DC Distribution Systems for Electrically Propelled Vessels: A multivariable Modeling Approach for Design and Analysis
Author
Alacano, Argiñe
Abad, Gonzalo
Author (from another institution)
Valera García, Juan Jose
Izurza Moreno, Pedro
Research Group
Sistemas electrónicos de potencia aplicados al control de la energía eléctrica
Other institutions
Ingeteam (Spain)
Version
Postprint
Rights
© 2017 IEEE
Access
Open access
URI
https://hdl.handle.net/20.500.11984/5718
Publisher’s version
https://doi.org/10.1109/JESTPE.2017.2730855
Published at
IEEE Journal of Emerging and Selected Topics in Power Electronics  Vol. 5. Nº 4. Pp.1604-1620, 2017
xmlui.dri2xhtml.METS-1.0.item-publicationfirstpage
1604
xmlui.dri2xhtml.METS-1.0.item-publicationlastpage
1620
Publisher
IEEE
Keywords
Mathematical model
Power system stability
Integrated circuit modeling
Computational modeling ... [+]
Mathematical model
Power system stability
Integrated circuit modeling
Computational modeling
Stability analysis
Topology
Power quality [-]
Abstract
The benefits of using power-electronic-based dc distribution systems in electrically propelled vessels are well known. However, some aspects must be deeply analyzed to guarantee a safe, robust, and st ... [+]
The benefits of using power-electronic-based dc distribution systems in electrically propelled vessels are well known. However, some aspects must be deeply analyzed to guarantee a safe, robust, and stable system by design. This paper presents a multivariable dc distribution system mathematical model, where all the transmission lines and filters impedances are considered. The model has been tackled under a holistic approach in which the average small-signal model of the drives/converters can be easily added and “connected” to the main grid model. The stability and power quality analysis, as well as the design and tuning of controls and active damping strategies, can be conducted through this mathematical model at low computational cost. In this paper, the usefulness of this model in the early design stages is presented through its application over a realistic design scenario. Moreover, the performance of the proposed model is proven into a real test bench, which presents a configuration and architecture quite close to the one used in a real vessel. The carried out tests prove the suitability of the proposed model, becoming a significant tool to get an improved design. [-]
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