Smart Grid Rebuilding based on Cloud Computing Architecture

To guarantee a better power availability in complex power systems, this paper provides a new strategy that deals with smart grids rebuilding for faults recovery. We propose a heuristic that schedules technical teams interventions and allows to carry favour clients with no recovery sources compared w...

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Vydané v:Conference proceedings - IEEE International Conference on Systems, Man, and Cybernetics s. 2259 - 2266
Hlavní autori: Ziouche, Leila, Meskina, Syrine Ben, Khalgui, Mohamed, Kahloul, Laid, Li, ZhiWu
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Jazyk:English
Vydavateľské údaje: IEEE 01.10.2019
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ISSN:2577-1655
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Abstract To guarantee a better power availability in complex power systems, this paper provides a new strategy that deals with smart grids rebuilding for faults recovery. We propose a heuristic that schedules technical teams interventions and allows to carry favour clients with no recovery sources compared with those that are covered by renewable sources, and the ones recovered by pertinent emergency lines. Thus, we overcome this complexity by providing an oriented cloud architecture based on effective computing sources for assisting technical teams in recovery, it permits to obtain gains in term of total energy availability and to reduce loss time. We implement a simulation tool for smart grid rebuilding based on a cloud system called SGCS-RB which is experimented on different smart grids, and we evaluate the number of recovered failures which is improved thanks to the proposed contribution.
AbstractList To guarantee a better power availability in complex power systems, this paper provides a new strategy that deals with smart grids rebuilding for faults recovery. We propose a heuristic that schedules technical teams interventions and allows to carry favour clients with no recovery sources compared with those that are covered by renewable sources, and the ones recovered by pertinent emergency lines. Thus, we overcome this complexity by providing an oriented cloud architecture based on effective computing sources for assisting technical teams in recovery, it permits to obtain gains in term of total energy availability and to reduce loss time. We implement a simulation tool for smart grid rebuilding based on a cloud system called SGCS-RB which is experimented on different smart grids, and we evaluate the number of recovered failures which is improved thanks to the proposed contribution.
Author Kahloul, Laid
Meskina, Syrine Ben
Khalgui, Mohamed
Li, ZhiWu
Ziouche, Leila
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  organization: National Institute of Applied Mathematics and Technology,LISI-Laboratory of Electrical and Computer Engineering,Tunis,Tunisia
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  givenname: Syrine Ben
  surname: Meskina
  fullname: Meskina, Syrine Ben
  organization: University of Carthage and Private Higher School of Engineering and Technology,LISI-Laboratory,Tunis,Tunisia
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  givenname: Mohamed
  surname: Khalgui
  fullname: Khalgui, Mohamed
  organization: Jinan University (Zhuhai Campus),School of Electrical and Information Engineering,Zhuhai,China,519070
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  givenname: Laid
  surname: Kahloul
  fullname: Kahloul, Laid
  organization: University of Mohamed Khider,Laid Kahloul is with LINFI Laboratory,Biskra,Algeria
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  givenname: ZhiWu
  surname: Li
  fullname: Li, ZhiWu
  organization: Institute of Systems Engineering, Macau University of Science and Technology,Taipa,Macau
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Snippet To guarantee a better power availability in complex power systems, this paper provides a new strategy that deals with smart grids rebuilding for faults...
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SubjectTerms Cloud computing
Computer architecture
Electric breakdown
Maintenance engineering
Power generation
Radio frequency
Smart grids
Title Smart Grid Rebuilding based on Cloud Computing Architecture
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