Datum
2018Autor
Drayer, ElisabethSchlagwort
500 Naturwissenschaften VerteilungsnetzNetzbetriebNetzführungSelbst organisierendes SystemFehlerortungHierarchisches SystemVerteiltes SystemIntelligentes StromnetzArchitektur <Informatik>OptimierungsproblemMetadata
Zur Langanzeige
Buch
Resilient Operation of Distribution Grids with Distributed-Hierarchical Architecture
Zusammenfassung
This thesis is about the design and the implementation of a resilient grid operation for the distribution grid. This research question is induced by the advancing of three trends: Decarbonisation, decentralisation and digitalisation. These three trends transform the hitherto passive distribution grid into an active system that contains an active operation. The term “resilience” describes capabilities of the system to absorb, to adapt, and to recover from faults and disturbances. This concept is realised on the one hand with the choice of the operation architecture, on the other hand for the choice of possible methods and functions.This thesis develops a distributed-hierarchical operation architecture. For this architecture several methods have been developed that optimally benefit from the operation architecture and that allow the fully automated operation of the distribution grid. For that purpose a heuristic optimisation has been developed to solve problems like voltage profile violations and congestions. Another important method, especially with regard to resilience, is the self-healing capability to resupply clients after permanent faults.
Zusätzliche Informationen
Zugleich: Dissertation, Universität Kassel, 2018Druckausgabe
Link zu kassel university pressZitieren
@book{doi:10.19211/KUP9783737605939,
urn:nbn:de:0002-405935,
author={Drayer, Elisabeth},
title={Resilient Operation of Distribution Grids with Distributed-Hierarchical Architecture},
publisher={kassel university press},
year={2018}
}
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2023-05-10T07:23:54Z 2023-05-10T07:23:54Z 2018 doi:10.19211/KUP9783737605939 978-3-7376-0593-9 (e-book) urn:nbn:de:0002-405935 http://hdl.handle.net/123456789/14679 Zugleich: Dissertation, Universität Kassel, 2018 eng kassel university press Urheberrechtlich geschützt https://rightsstatements.org/page/InC/1.0/ 500 Resilient Operation of Distribution Grids with Distributed-Hierarchical Architecture Buch This thesis is about the design and the implementation of a resilient grid operation for the distribution grid. This research question is induced by the advancing of three trends: Decarbonisation, decentralisation and digitalisation. These three trends transform the hitherto passive distribution grid into an active system that contains an active operation. The term “resilience” describes capabilities of the system to absorb, to adapt, and to recover from faults and disturbances. This concept is realised on the one hand with the choice of the operation architecture, on the other hand for the choice of possible methods and functions.This thesis develops a distributed-hierarchical operation architecture. For this architecture several methods have been developed that optimally benefit from the operation architecture and that allow the fully automated operation of the distribution grid. For that purpose a heuristic optimisation has been developed to solve problems like voltage profile violations and congestions. Another important method, especially with regard to resilience, is the self-healing capability to resupply clients after permanent faults. open access Drayer, Elisabeth 2018-06-29 xi, 185 Seiten Kassel, Universität Kassel, Fachbereich Elektrotechnik / Informatik Braun, Martin (Prof. Dr.-Ing.) Caire, Raphaël (Dr.) Kassel isbn:978-3-7376-0592-2 (print) Verteilungsnetz Netzbetrieb Netzführung Selbst organisierendes System Fehlerortung Hierarchisches System Verteiltes System Intelligentes Stromnetz Architektur <Informatik> Optimierungsproblem publishedVersion Energy Management and Power System Operation Band 6 true 39,00 Energy Management and Power System Operation Naturwissenschaft, Technik, Informatik, Medizin Dissertation FB 16 / Elektrotechnik / Informatik true true
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:Urheberrechtlich geschützt