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Active damping control strategy to avoid resonance issues in diesel-electric vessels with DC distribution systems (1.066Mb)
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Title
Active damping control strategy to avoid resonance issues in diesel-electric vessels with DC distribution systems
Author
Alacano, ArgiñeORCID
Abad, GonzaloORCID
Valera, Juan José
Research Group
Sistemas Electrónicos de Potencia aplicados al Control de la Energía Eléctrica
Redes Eléctricas
Version
Published version
Document type
Conference Object
Embargo end date
2136-01-01
Language
English
Rights
© 2016 IEEE
Access
Open access
URI
https://hdl.handle.net/20.500.11984/14590
Publisher’s version
https://doi.org/10.1109/COMPEL.2016.7556681
xmlui.dri2xhtml.METS-1.0.item-identifier
https://ieeexplore.ieee.org/document/7556681
Published at
2016 IEEE 17th Workshop on Control and Modeling for Power Electronics   2016 COMPEL. N. art. 7556681. Trondheim, Norway
Publisher
IEEE
Keywords
ODS 7 Energía asequible y no contaminante
ODS 13 Acción por el clima
ODS 14 Vida submarina
DC distribution system ... [+]
ODS 7 Energía asequible y no contaminante
ODS 13 Acción por el clima
ODS 14 Vida submarina
DC distribution system
active damping
power system dynamics
power quality [-]
Subject (UNESCO Thesaurus)
Electronic technology
Semiconductor
Abstract
This paper presents an active damping control strategy especially designed to mitigate the effects of the resonances of low damped power electronic based DC distribution systems. In those systems, som ... [+]
This paper presents an active damping control strategy especially designed to mitigate the effects of the resonances of low damped power electronic based DC distribution systems. In those systems, some controlled converters are connected to a common DC bus usually exhibiting negative impedance due to its operation as constant power loads. The active damping control strategy is supported by a model based design approach, which defines the dynamic behavior of the entire system. It is implemented in a complete simulation model which considers the nonlinearities of the electronic power converters such as the delays or discretization, among others. The proposed control strategy improves the power quality in both, the transient and the steady state without compromising the voltage and current controllers' bandwidths. The performance of the proposed active damping control strategy is validated through several simulation results. [-]
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