Generalised resilience models for power systems and dependent infrastructure during extreme events

Author:

Krishnamurthy Vaidyanathan1ORCID,Huang Bing2,Kwasinski Alexis13,Pierce Evan4,Baldick Ross2

Affiliation:

1. Department of Electrical and Computer EngineeringUniversity of Pittsburgh4200 Fifth AvePittsburghPA15260USA

2. Electrical and Computer Engineering, The University of Texas at Austin2501 Speedway, C0803AustinTX78712USA

3. Center for Electromechanics, The University of Texas at Austin10500 Exploration WayAustinTX78758USA

4. McCombs School of BusinessThe University of Texas at Austin2110 SpeedwayAustinTX78705USA

Funder

Defense Threat Reduction Agency

Publisher

Institution of Engineering and Technology (IET)

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Information Systems

Reference62 articles.

1. KwasinskiA.TrainorJ.WolshonB.et al.: ‘A conceptual framework for assessing resilience at the community scale’ NIST GCR 16‐001 January2016

2. CauffmanS.: ‘Community resilience planning guide for buildings and infrastructure systems’. NIST Special Publication 1190 vol. 1 and vol. 2 October2015. Available athttp://dx.doi.org/10.6028/NIST.SP.1190v1andhttp://dx.doi.org/10.6028/NIST.SP.1190v2

3. ARUP: ‘City resilience framework’ The Rockefeller Foundation April2014. Available athttps://www.rockefellerfoundation.org/app/uploads/City‐Resilience‐Framework1.pdf

4. KwasinskiA.KrishnmaurthyV.: ‘Generalized integrated framework for modelling communications and electric power infrastructure resilience’.Intelec Queensland Australia 2017

5. KrishnmaurthyV.KwasinskiA.: ‘Multi‐node power supply resiliency of communication networks during extreme events’.Intelec Queensland Australia 2017

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