Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids

This paper presents a comprehensive robust distributed intelligent control for optimum self-healing activities in smart distribution systems considering the uncertainty in loads. The presented agent based framework obviates the requirements for a central control method and improves the reliability o...

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Main Author: N. Zendehdel
Format: Article
Language:English
Published: University of Mohaghegh Ardabili 2015-06-01
Series:Journal of Operation and Automation in Power Engineering
Subjects:
Online Access:http://joape.uma.ac.ir/article_291_4adddb47b5ba8e299f3f84df21ad83a0.pdf
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spelling doaj-4de55d80dd804013afb3d2f80f9b7bef2020-11-24T21:28:22ZengUniversity of Mohaghegh ArdabiliJournal of Operation and Automation in Power Engineering2322-45762423-45672015-06-0131122291Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart GridsN. Zendehdel0Department of Electrical Engineering, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, IranThis paper presents a comprehensive robust distributed intelligent control for optimum self-healing activities in smart distribution systems considering the uncertainty in loads. The presented agent based framework obviates the requirements for a central control method and improves the reliability of the self-healing mechanism. Agents possess three characteristics including local views, decentralizations and autonomy. The message, exchanged among neighboring agents, is used to develop a global information discovery algorithm and updates the topology information of out-of-service areas, available supply capacity and routing information. Fuzzy description is employed to take into account the uncertainties of measurements in which are exchanged between agents. Moreover, to find the optimal restoration plan, incorporating the discovered data, a routing problem is developed as a fuzzy binary linear optimization problem. This problem is approached by a novel method using a specific ranking function. Finally, robustness and applicability of the proposed self-healing method is tested on two standard case studies. The obtained results emphasize that ignoring the uncertainties may lead to non-realistic solutions.http://joape.uma.ac.ir/article_291_4adddb47b5ba8e299f3f84df21ad83a0.pdfAgent based self-healing frameworkFuzzy binary linear optimizationSmart gridUncertain load
collection DOAJ
language English
format Article
sources DOAJ
author N. Zendehdel
spellingShingle N. Zendehdel
Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
Journal of Operation and Automation in Power Engineering
Agent based self-healing framework
Fuzzy binary linear optimization
Smart grid
Uncertain load
author_facet N. Zendehdel
author_sort N. Zendehdel
title Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
title_short Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
title_full Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
title_fullStr Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
title_full_unstemmed Robust Agent Based Distribution System Restoration with Uncertainty in Loads in Smart Grids
title_sort robust agent based distribution system restoration with uncertainty in loads in smart grids
publisher University of Mohaghegh Ardabili
series Journal of Operation and Automation in Power Engineering
issn 2322-4576
2423-4567
publishDate 2015-06-01
description This paper presents a comprehensive robust distributed intelligent control for optimum self-healing activities in smart distribution systems considering the uncertainty in loads. The presented agent based framework obviates the requirements for a central control method and improves the reliability of the self-healing mechanism. Agents possess three characteristics including local views, decentralizations and autonomy. The message, exchanged among neighboring agents, is used to develop a global information discovery algorithm and updates the topology information of out-of-service areas, available supply capacity and routing information. Fuzzy description is employed to take into account the uncertainties of measurements in which are exchanged between agents. Moreover, to find the optimal restoration plan, incorporating the discovered data, a routing problem is developed as a fuzzy binary linear optimization problem. This problem is approached by a novel method using a specific ranking function. Finally, robustness and applicability of the proposed self-healing method is tested on two standard case studies. The obtained results emphasize that ignoring the uncertainties may lead to non-realistic solutions.
topic Agent based self-healing framework
Fuzzy binary linear optimization
Smart grid
Uncertain load
url http://joape.uma.ac.ir/article_291_4adddb47b5ba8e299f3f84df21ad83a0.pdf
work_keys_str_mv AT nzendehdel robustagentbaseddistributionsystemrestorationwithuncertaintyinloadsinsmartgrids
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