Chapter Modeling Resilience in Electrical Distribution Networks

Electrical distribution networks deliver a fundamental service to citizens. However, they are still highly vulnerable to natural hazards as well as to cyberattacks; therefore, additional commitment and investments are needed to foster their resilience. Toward that, this paper presents and proposes t...

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Bibliographic Details
Main Author: Pollino, Maurizio (auth)
Other Authors: Tofani, Alberto (auth), Di Pietro, Antonio (auth), La Porta, Luigi (auth), Giovinazzi, Sonia (auth), Parmendola, Giacomo (auth), Rosato, Vittorio (auth), D'Agostino, Gregorio (auth)
Format: eBook
Published: InTechOpen 2019
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Online Access:Get fulltext
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100 1 |a Pollino, Maurizio  |e auth 
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700 1 |a Tofani, Alberto  |e auth 
700 1 |a Di Pietro, Antonio  |e auth 
700 1 |a La Porta, Luigi  |e auth 
700 1 |a Giovinazzi, Sonia  |e auth 
700 1 |a Parmendola, Giacomo  |e auth 
700 1 |a Rosato, Vittorio  |e auth 
700 1 |a D'Agostino, Gregorio  |e auth 
245 1 0 |a Chapter Modeling Resilience in Electrical Distribution Networks 
260 |b InTechOpen  |c 2019 
506 0 |a Open Access  |2 star  |f Unrestricted online access 
520 |a Electrical distribution networks deliver a fundamental service to citizens. However, they are still highly vulnerable to natural hazards as well as to cyberattacks; therefore, additional commitment and investments are needed to foster their resilience. Toward that, this paper presents and proposes the use of a complex simulation model, called reconfiguration simulator (RecSIM), enabling to evaluate the effectiveness of resilience enhancement strategies for electric distribution networks and the required resources to implement them. The focus is, in particular, on one specific attribute of resilience, namely, the readiness, i.e., the promptness and efficiency to recover the service functionality after a crisis event by managing and deploying the available resources rapidly and effectively. RecSIM allows estimating how and to what extent technological, topological, and management issues might improve electrical distribution networks' functionality after the occurrence of accidental faults, accounting for interdependency issues and reconfiguration possibilities. The viability of implementing RecSIM on a real and large urban network is showcased in the paper with reference to the study case of the electrical distribution network (EDN) of Rome city. 
540 |a Creative Commons 
546 |a English 
650 7 |a Structural engineering  |2 bicssc 
653 |a electrical distribution network, resilience metrics, interdependence, outage recovery, vulnerability 
773 1 0 |0 OAPEN Library ID: ONIX_20210602_10.5772/intechopen.85917_422  |7 nnaa