Please use this identifier to cite or link to this item: https://doi.org/10.21256/zhaw-19709
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dc.contributor.authorDobrowolski, Jean-
dc.contributor.authorKorba, Petr-
dc.contributor.authorSegundo Sevilla, Felix Rafael-
dc.contributor.authorSattingert, Walter-
dc.date.accessioned2020-03-12T08:12:23Z-
dc.date.available2020-03-12T08:12:23Z-
dc.date.issued2019-
dc.identifier.isbn978-1-5386-4722-6de_CH
dc.identifier.urihttps://digitalcollection.zhaw.ch/handle/11475/19709-
dc.description© 2019 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.de_CH
dc.description.abstractIn this paper, three different centralized control designs that vary on complexity are presented to damp inter-area oscillations in large power systems. All the controls are based on phasor measurements. The first two proposed architectures use simple proportional gains that consider availability of measurements from different areas of the system and fulfill different optimization functions. The third controller is based on a more sophisticated Linear Quadratic Gaussian approach which requires access to the state space model of the system under investigation. The novelty of the proposed scheme resides in designing a single control to command the most influence group of machines in the system. To illustrate the effectiveness of the proposed algorithms, simulations results in the IEEE New England model are presented.de_CH
dc.language.isoende_CH
dc.publisherIEEEde_CH
dc.rightsLicence according to publishing contractde_CH
dc.subjectInter-area oscillationde_CH
dc.subjectParticle swarm optimizationde_CH
dc.subjectLinear quadratic gaussiande_CH
dc.subjectDynamic stabilityde_CH
dc.subjectModal analysisde_CH
dc.subject.ddc621.3: Elektro-, Kommunikations-, Steuerungs- und Regelungstechnikde_CH
dc.titleCentralized wide area damping controller for power system oscillation problemsde_CH
dc.typeKonferenz: Paperde_CH
dcterms.typeTextde_CH
zhaw.departementSchool of Engineeringde_CH
zhaw.organisationalunitInstitut für Energiesysteme und Fluid-Engineering (IEFE)de_CH
dc.identifier.doi10.1109/PTC.2019.8810965de_CH
dc.identifier.doi10.21256/zhaw-19709-
zhaw.conference.details2019 IEEE Milan PowerTech, Milan, Italy, 23-27 June 2019de_CH
zhaw.funding.euNode_CH
zhaw.originated.zhawYesde_CH
zhaw.publication.statusacceptedVersionde_CH
zhaw.publication.reviewNot specifiedde_CH
zhaw.title.proceedings2019 IEEE Milan PowerTechde_CH
zhaw.funding.snf173628de_CH
zhaw.author.additionalNode_CH
Appears in collections:Publikationen School of Engineering

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Dobrowolski, J., Korba, P., Segundo Sevilla, F. R., & Sattingert, W. (2019). Centralized wide area damping controller for power system oscillation problems. 2019 IEEE Milan PowerTech. https://doi.org/10.1109/PTC.2019.8810965
Dobrowolski, J. et al. (2019) ‘Centralized wide area damping controller for power system oscillation problems’, in 2019 IEEE Milan PowerTech. IEEE. Available at: https://doi.org/10.1109/PTC.2019.8810965.
J. Dobrowolski, P. Korba, F. R. Segundo Sevilla, and W. Sattingert, “Centralized wide area damping controller for power system oscillation problems,” in 2019 IEEE Milan PowerTech, 2019. doi: 10.1109/PTC.2019.8810965.
DOBROWOLSKI, Jean, Petr KORBA, Felix Rafael SEGUNDO SEVILLA und Walter SATTINGERT, 2019. Centralized wide area damping controller for power system oscillation problems. In: 2019 IEEE Milan PowerTech. Conference paper. IEEE. 2019. ISBN 978-1-5386-4722-6
Dobrowolski, Jean, Petr Korba, Felix Rafael Segundo Sevilla, and Walter Sattingert. 2019. “Centralized Wide Area Damping Controller for Power System Oscillation Problems.” Conference paper. In 2019 IEEE Milan PowerTech. IEEE. https://doi.org/10.1109/PTC.2019.8810965.
Dobrowolski, Jean, et al. “Centralized Wide Area Damping Controller for Power System Oscillation Problems.” 2019 IEEE Milan PowerTech, IEEE, 2019, https://doi.org/10.1109/PTC.2019.8810965.


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