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Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks

The handling of weak networks with asymmetric loads and disturbances im- plies the accurate handling of the second-harmonic component that appears in an unbalanced network. This paper proposes a classic vector control approach using a PI-based controller with superior decoupling capabilities for ope...

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Autores principales: Siemaszko, Daniel, Rufery, Alfred
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2015-003.97
http://cds.cern.ch/record/2038617
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author Siemaszko, Daniel
Rufery, Alfred
author_facet Siemaszko, Daniel
Rufery, Alfred
author_sort Siemaszko, Daniel
collection CERN
description The handling of weak networks with asymmetric loads and disturbances im- plies the accurate handling of the second-harmonic component that appears in an unbalanced network. This paper proposes a classic vector control approach using a PI-based controller with superior decoupling capabilities for operation in weak networks with unbalanced phase voltages. A synchronization method for weak unbalanced networks is detailed, with dedicated dimensioning rules. The use of a double-frame controller allows a current symmetry or controlled imbalance to be forced for compensation of power oscillations by controlling the negative current sequence. This paper also serves as a useful reminder of the proper way to cancel the inherent coupling effect due to the transformation to the synchronous rotating reference frame, and of basic considerations of the relationship between switching frequency and control bandwidth.
id cern-2038617
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-20386172022-08-10T13:06:18Zdoi:10.5170/CERN-2015-003.97http://cds.cern.ch/record/2038617engSiemaszko, DanielRufery, AlfredDouble-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced NetworksAccelerators and Storage RingsThe handling of weak networks with asymmetric loads and disturbances im- plies the accurate handling of the second-harmonic component that appears in an unbalanced network. This paper proposes a classic vector control approach using a PI-based controller with superior decoupling capabilities for operation in weak networks with unbalanced phase voltages. A synchronization method for weak unbalanced networks is detailed, with dedicated dimensioning rules. The use of a double-frame controller allows a current symmetry or controlled imbalance to be forced for compensation of power oscillations by controlling the negative current sequence. This paper also serves as a useful reminder of the proper way to cancel the inherent coupling effect due to the transformation to the synchronous rotating reference frame, and of basic considerations of the relationship between switching frequency and control bandwidth.The handling of weak networks with asymmetric loads and disturbances implies the accurate handling of the second-harmonic component that appears in an unbalanced network. This paper proposes a classic vector control approach using a PI-based controller with superior decoupling capabilities for operation in weak networks with unbalanced phase voltages. A synchronization method for weak unbalanced networks is detailed, with dedicated dimensioning rules. The use of a double-frame controller allows a current symmetry or controlled imbalance to be forced for compensation of power oscillations by controlling the negative current sequence. This paper also serves as a useful reminder of the proper way to cancel the inherent coupling effect due to the transformation to the synchronous rotating reference frame, and of basic considerations of the relationship between switching frequency and control bandwidth.arXiv:1607.01630arXiv:1607.01630oai:cds.cern.ch:20386172016-07-06
spellingShingle Accelerators and Storage Rings
Siemaszko, Daniel
Rufery, Alfred
Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title_full Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title_fullStr Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title_full_unstemmed Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title_short Double-Frame Current Control with a Multivariable PI Controller and Power Compensation for Weak Unbalanced Networks
title_sort double-frame current control with a multivariable pi controller and power compensation for weak unbalanced networks
topic Accelerators and Storage Rings
url https://dx.doi.org/10.5170/CERN-2015-003.97
http://cds.cern.ch/record/2038617
work_keys_str_mv AT siemaszkodaniel doubleframecurrentcontrolwithamultivariablepicontrollerandpowercompensationforweakunbalancednetworks
AT ruferyalfred doubleframecurrentcontrolwithamultivariablepicontrollerandpowercompensationforweakunbalancednetworks