State-space generalized minimum variance controller based PSS for damping of interarea modes

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OriginalspracheEnglisch
Titel des SammelwerksProceedings of the 18th Mediterranean Electrotechnical Conference
UntertitelIntelligent and Efficient Technologies and Services for the Citizen, MELECON 2016
Herausgeber/-innenConstandinos Mavromoustakis, Soulla Louca, Constantinos S. Pattichis, Julius Georgiou, Despina Michael, A. Paschalidou, Efthyvoulos Kyriacou, Vasos Vassiliou, Christos Panayiotou, Elias Kyriakides, Georgios Ellinas, George Hadjichristofi, C. Loizou
Seiten1-6
Seitenumfang6
ISBN (elektronisch)9781509000579
PublikationsstatusVeröffentlicht - 1 Apr. 2016

Abstract

This paper describes the design of a Power System Stabilizer (PSS) based on the State-Space Generalized Minimum Variance Controller (GMVSS) approach for damping low frequency oscillations, i.e. the interarea modes, in power systems. The work presents the identification of the benchmark grid called Kundur's Four-Machine Two-Area Test System and its evaluation, as well as a comparison between the most common PSS approaches and the state-space GMVSS one. Results show that the proposed PSS performs well for both short circuit and step in reference voltage simulations. Besides, the GMVSS based PSS presents only two tuning parameters, making the controller design more intuitive and easier than other common approaches.

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State-space generalized minimum variance controller based PSS for damping of interarea modes. / Trentini, R.; Kutzner, R.; Hofmann, L.
Proceedings of the 18th Mediterranean Electrotechnical Conference: Intelligent and Efficient Technologies and Services for the Citizen, MELECON 2016. Hrsg. / Constandinos Mavromoustakis; Soulla Louca; Constantinos S. Pattichis; Julius Georgiou; Despina Michael; A. Paschalidou; Efthyvoulos Kyriacou; Vasos Vassiliou; Christos Panayiotou; Elias Kyriakides; Georgios Ellinas; George Hadjichristofi; C. Loizou. 2016. S. 1-6 7495350.

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Trentini, R, Kutzner, R & Hofmann, L 2016, State-space generalized minimum variance controller based PSS for damping of interarea modes. in C Mavromoustakis, S Louca, CS Pattichis, J Georgiou, D Michael, A Paschalidou, E Kyriacou, V Vassiliou, C Panayiotou, E Kyriakides, G Ellinas, G Hadjichristofi & C Loizou (Hrsg.), Proceedings of the 18th Mediterranean Electrotechnical Conference: Intelligent and Efficient Technologies and Services for the Citizen, MELECON 2016., 7495350, S. 1-6. https://doi.org/10.1109/melcon.2016.7495350
Trentini, R., Kutzner, R., & Hofmann, L. (2016). State-space generalized minimum variance controller based PSS for damping of interarea modes. In C. Mavromoustakis, S. Louca, C. S. Pattichis, J. Georgiou, D. Michael, A. Paschalidou, E. Kyriacou, V. Vassiliou, C. Panayiotou, E. Kyriakides, G. Ellinas, G. Hadjichristofi, & C. Loizou (Hrsg.), Proceedings of the 18th Mediterranean Electrotechnical Conference: Intelligent and Efficient Technologies and Services for the Citizen, MELECON 2016 (S. 1-6). Artikel 7495350 https://doi.org/10.1109/melcon.2016.7495350
Trentini R, Kutzner R, Hofmann L. State-space generalized minimum variance controller based PSS for damping of interarea modes. in Mavromoustakis C, Louca S, Pattichis CS, Georgiou J, Michael D, Paschalidou A, Kyriacou E, Vassiliou V, Panayiotou C, Kyriakides E, Ellinas G, Hadjichristofi G, Loizou C, Hrsg., Proceedings of the 18th Mediterranean Electrotechnical Conference: Intelligent and Efficient Technologies and Services for the Citizen, MELECON 2016. 2016. S. 1-6. 7495350 doi: 10.1109/melcon.2016.7495350
Trentini, R. ; Kutzner, R. ; Hofmann, L. / State-space generalized minimum variance controller based PSS for damping of interarea modes. Proceedings of the 18th Mediterranean Electrotechnical Conference: Intelligent and Efficient Technologies and Services for the Citizen, MELECON 2016. Hrsg. / Constandinos Mavromoustakis ; Soulla Louca ; Constantinos S. Pattichis ; Julius Georgiou ; Despina Michael ; A. Paschalidou ; Efthyvoulos Kyriacou ; Vasos Vassiliou ; Christos Panayiotou ; Elias Kyriakides ; Georgios Ellinas ; George Hadjichristofi ; C. Loizou. 2016. S. 1-6
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title = "State-space generalized minimum variance controller based PSS for damping of interarea modes",
abstract = "This paper describes the design of a Power System Stabilizer (PSS) based on the State-Space Generalized Minimum Variance Controller (GMVSS) approach for damping low frequency oscillations, i.e. the interarea modes, in power systems. The work presents the identification of the benchmark grid called Kundur's Four-Machine Two-Area Test System and its evaluation, as well as a comparison between the most common PSS approaches and the state-space GMVSS one. Results show that the proposed PSS performs well for both short circuit and step in reference voltage simulations. Besides, the GMVSS based PSS presents only two tuning parameters, making the controller design more intuitive and easier than other common approaches.",
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author = "R. Trentini and R. Kutzner and L. Hofmann",
note = "Publisher Copyright: {\textcopyright} 2016 IEEE. Copyright: Copyright 2016 Elsevier B.V., All rights reserved.",
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AU - Trentini, R.

AU - Kutzner, R.

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N1 - Publisher Copyright: © 2016 IEEE. Copyright: Copyright 2016 Elsevier B.V., All rights reserved.

PY - 2016/4/1

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N2 - This paper describes the design of a Power System Stabilizer (PSS) based on the State-Space Generalized Minimum Variance Controller (GMVSS) approach for damping low frequency oscillations, i.e. the interarea modes, in power systems. The work presents the identification of the benchmark grid called Kundur's Four-Machine Two-Area Test System and its evaluation, as well as a comparison between the most common PSS approaches and the state-space GMVSS one. Results show that the proposed PSS performs well for both short circuit and step in reference voltage simulations. Besides, the GMVSS based PSS presents only two tuning parameters, making the controller design more intuitive and easier than other common approaches.

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KW - Power system stability

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ER -

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