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  • 201.
    Johansson, Pär
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Reviderad metod för provning av insatser för datamedia2001In: BrandPosten, no 24, p. 15-Article in journal (Other (popular science, discussion, etc.))
  • 202.
    Johansson, Pär
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Revised method for testing data media cabinet inserts2001In: BrandPosten, no 24, p. 15-Article in journal (Other (popular science, discussion, etc.))
  • 203.
    Johansson, Pär
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    SP's horizontal furnace up rated in order to meet extreme fire curves2004In: BrandPosten, no 30, p. 26-Article in journal (Other (popular science, discussion, etc.))
  • 204.
    Johansson, Pär
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    SPs ugn trimmad för att klara extrema brandkurvor2004In: BrandPosten, no 30, p. 26-Article in journal (Other (popular science, discussion, etc.))
  • 205.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    A review of blast loading and explosions in the context of multifunctional buildings2013Report (Refereed)
    Download full text (pdf)
    FULLTEXT01
  • 206.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Developing Research in Performance Based Design2011In: Brandposten, no 45, p. 18-Article in journal (Other (popular science, discussion, etc.))
  • 207.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Mini-symposium on Performance-based Fire Safety Engineering of Structures2012In: Brandposten, no 46, p. 25-Article in journal (Other (popular science, discussion, etc.))
  • 208.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Safety through risk assessment?2014In: Brandposten, no 50, p. 25-Article in journal (Other (popular science, discussion, etc.))
  • 209.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    The impact of design fire scenario on the reliability of an insulated steel beam2012Conference paper (Other academic)
  • 210.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    An analytical method for determining the loading on connections in heating and cooling during a fire2013In: SEMC 2013: the fifth international conference on structural engineering, mechanics and computation. Cape Town, South Africa, 2013, , p. 1965-1970Conference paper (Refereed)
  • 211.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Anderson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Modelling in fire resistance and fire dynamics2012In: Brandposten, no 47, p. 26-Article in journal (Other (popular science, discussion, etc.))
  • 212.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    International comparison of the calculated response of loaded steel beams in a standard fire test2015In: Brandposten, no 53, p. 12-13Article in journal (Other (popular science, discussion, etc.))
  • 213.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Round robin on calculations: Steel beam with standard fire exposure2015Report (Refereed)
    Download full text (pdf)
    FULLTEXT01
  • 214.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Rylander, Martin
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Rabe, Martin
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Kahl, Fredrik
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Testing of timber elements using SP Fire Technologies new loading system2013In: Brandposten, no 49, p. 34-35Article in journal (Other (popular science, discussion, etc.))
  • 215.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Schmid, Joachim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Sveriges tekniska forskningsinstitut, SP Trä.
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Charring rate of timber in natural fires2013In: 8th International Conference on Structures in Fire, Tongji University , 2013, , p. 8Conference paper (Other academic)
  • 216.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Schmid, Joachim
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    The influence of parametric fire scenarios on structural timber performance and reliability2014Report (Refereed)
    Download full text (pdf)
    FULLTEXT01
  • 217.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Devaney, S.
    Usmani, A.
    Applying the PEER Performance Based Earthquake Engineering methodology to Structures in Fire2012Conference paper (Other academic)
  • 218.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Honfi, Daniel
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Bygg och Mekanik.
    Eriksson, Kerstin
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Branddynamik.
    Winberg, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    IMPROVER: Improved risk evaluation and application of resilience concepts to critical infrastructure2015In: Brandposten, no 53, p. 18-19Article in journal (Other (popular science, discussion, etc.))
  • 219.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Jansson, Robert
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    A comparison of an explicit and an implicit transient strain formulation for concrete in fire2014Conference paper (Refereed)
    Abstract [en]

    This paper reviews the phenomena of concrete behavior which is captured in the material data of the Eurocode and reviews additional phenomena which may be included to improve results incertain cases. As a case study, a series of tests which were conducted by Anderberg and Thelandersson in the 1970's in Sweden on concrete samples are studied using first of all the temperature dependent material model which is used in the Eurocodes. The impact of load induced thermal strain is discussed through comparison of the implicit model which is used in the Eurocode and a simple explicit model based on the test results.

  • 220.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Sjöström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Jansson, Robert
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Deflection of concrete floor slab during fire test: tests and modeling2012In: Proceedings from 15th Int Conf on Experimental Mechanics, Porto, 2012, 2012Conference paper (Refereed)
  • 221.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Sjöström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Jansson, Robert
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Directional dependence of deflections and damages during fire tests of post-tensioned concrete slabs2012In: Proceedings from 7th Int Conf on Structures in Fire, 2012Conference paper (Refereed)
  • 222.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Sjöström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Jansson, Robert
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Modeling the deflection of an unloaded concrete floor slab during a fire test2012In: Proceedings from 7th Int Conf on Structures in Fire, 2012Conference paper (Other academic)
  • 223.
    Lange, David
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Strömgren, Michael
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research.
    Nilsson, Martin
    van Hees, Patrick
    Safe use of multifunctional buildings2013In: Brandposten, no 49, p. 26-27Article in journal (Other (popular science, discussion, etc.))
  • 224.
    Larsson, Fredrik
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Elektronik.
    Anderson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Andersson, Petra
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Sveriges tekniska forskningsinstitut, SP Sveriges tekniska forskningsinstitut / Brandteknik, forskning (BRf ).
    Säkrare batterisystem och elektrifierade fordon2015In: Brandposten, no 52, p. 4-Article in journal (Other (popular science, discussion, etc.))
  • 225.
    Lindqvist, Jan-Erik
    et al.
    Brandteknik, material (BRm).
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Skadeutredning efter brand2006In: Bygg & Teknik, no 6, p. 64-65Article in journal (Other (popular science, discussion, etc.))
  • 226.
    Lindqvist, Jan-Erik
    et al.
    Brandteknik, material (BRm).
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Skadeutredning efter tankbilsbrand på bro.2006In: Brandposten, no 34, p. 31-32Article in journal (Other (popular science, discussion, etc.))
  • 227. Lund, Peter
    et al.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Stripple, Håkan
    Research of a new method to drain water seepage in hardrock tunnels2012In: Proceedings från Eurorock 2012, 2012Conference paper (Other academic)
  • 228.
    Lundqvist, Annika
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Mårtensson, Ulf
    Persson, Bror
    Brandteknik, forskning (BRf ).
    Measurement on thermal diffusivity in materials at high temperatures. Nordtest project 994-90.1991Report (Refereed)
    Download full text (pdf)
    FULLTEXT01
  • 229.
    Lönnermark, Anders
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Sveriges tekniska forskningsinstitut, SP – Sveriges Tekniska Forskningsinstitut / Brandteknik, skydd (BRs ).
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Halvtid för CascEff2015In: Brandposten, no 53, p. 26-27Article in journal (Other (popular science, discussion, etc.))
  • 230.
    Melkunaite, Laura
    dbi dansk brand- og sikringsteknisk institut, Denmark.
    Baker, Greg (Contributor)
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research AS, Norge.
    Cadete, Goncalo (Contributor)
    INOV.
    Carreira, Elisabete (Contributor)
    INOV.
    Gaspar, Carlos (Contributor)
    INOV.
    Gattinesi, Peter
    JRC, Italy.
    Guay, Fanny (Contributor)
    dbi dansk brand- og sikringsteknisk institut, Denmark.
    Honfi, Daniel (Contributor)
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Bygg och Mekanik.
    Ioannou, Ioanna (Contributor)
    University College London, UK.
    Kinscher, J (Contributor)
    INERIS, Spain.
    Lange, David (Contributor)
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Petersen, Laura (Contributor)
    EMSC.
    Reilly, Paul (Contributor)
    University of Sheffield, UK.
    RØD, Bjarte (Contributor)
    Arctic University of Norway, Norway.
    Salmon, Romuald (Contributor)
    INERIS, Spain.
    Stevensen, Rebecca (Contributor)
    University of Sheffield, UK.
    Theocharidou, Marianthi (Contributor)
    JRC, Italy.
    Utkin, Andrei (Contributor)
    INOV.
    IMPROVER Deliverable 1.1 International Survey2016Report (Other academic)
    Abstract [en]

    In recent years, the concept of resilience started to dominate strategic, operational as well as political domains of modern societies. Living in highly interconnected environment, where layers of infrastructures, people and economic interests interact creating both opportunities and vulnerabilities, different countries around the world turned towards resilience practices to reduce vulnerability of their critical infrastructures and societies. However, how can one implement resilience concepts without a comprehensive understanding of the concept itself? Focusing on the concept and practice of critical infrastructure resilience, this report provides a comprehensive overview of the existing scientific literature regarding the concept of resilience in general. It discusses the development of the concept of resilience and its application in societal, economic, ecological, organisational and critical infrastructure domains. The report provides an extensive discussion on the definition of resilience concepts, as well as information on scientific endeavours to implement and measure concepts of resilience.

     

    The report also contains detailed information on the definitions and implementation of the concepts of resilience in different continents, namely Europe, Africa, Asia, Oceania, North America and South America. Focusing on the concept of critical infrastructure resilience, it provides an overview of the existing official concepts of resilience, implementation tools, and general practices aimed at increasing organisational, societal, economic and technical resilience in different countries.

     

    To collect all the information, the IMPROVER consortium performed an extensive literature review on the use of resilience concepts. We also held a workshop with the associate partners, and conducted a set of personal interviews with critical infrastructure operators and resilience experts around the Europe. While conducting a number of case studies in different continents, we analysed existing region and state-level documents, and reports.

    Download full text (pdf)
    IMPROVER D1.1 International Survey
  • 231.
    Mollsjö, Malin
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Horisontalugnen renoverad2008In: BrandPosten, no 39, p. 22-Article in journal (Other (popular science, discussion, etc.))
  • 232.
    Mollsjö, Malin
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Ronovation of SP's horizontal furnace2008In: BrandPosten, no 39, p. 22-Article in journal (Other (popular science, discussion, etc.))
  • 233. Nardin, L
    et al.
    Boström, Lars
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Zaupa, F
    The effect of knots on the fracture of timber2000Conference paper (Other academic)
  • 234. Norén, Johan
    et al.
    Delin, Mattias
    Ronchi, Enrico
    Arias, Silvia
    Kuklane, Kalev
    Halder, Amitava
    Lundgren, Karin
    Fridolf, Karl
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Ascending Stair Evacuation – Effects Of Fatigue, Walking Speed & Human Behavior2015In: Proceedings for The 6th International Symposium on Human Behaviour in Fire, 2015Conference paper (Other academic)
  • 235. Norén, Johan
    et al.
    Winberg, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Standardisering för att främja innovation?2015In: Bygg & Teknik, no 6Article in journal (Other academic)
  • 236.
    Olsen, Hans
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Sjöström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Jansson, Robert
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Anderson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Thermal properties of heated insulation materials2013Conference paper (Refereed)
  • 237.
    Olsson, Kim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Gastemperatur i brand2013In: Brandposten, no 49, p. 33-Article in journal (Other (popular science, discussion, etc.))
  • 238.
    Olsson, Kim
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Sandström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Bygg och Mekanik, Tillförlitlighet och Livslängd.
    Albrektsson, Joakim
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Anderson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Simulation of Delamination and Collapse of a Fire Exposed FRP Composite Bulkhead2015Conference paper (Other academic)
  • 239.
    Persson, Henry
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research.
    Appel, Glenn
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Branddynamik.
    Sjöström, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Amon, Francine
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Sveriges tekniska forskningsinstitut, SP Sveriges tekniska forskningsinstitut / Brandteknik, forskning (BRf ).
    ETANKFIRE – Experimental results of large ethanol fuel pool fires2015Report (Refereed)
    Download full text (pdf)
    FULLTEXT01
  • 240.
    Persson, Henry
    et al.
    Brandteknik, skydd (BRs ).
    Simonson, Margaret
    Brandteknik, skydd (BRs ).
    Rosén, Fredrik
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Ethanol tank fire fighting to be presented at a workshop2011In: Fire Product search, p. 1-3Article in journal (Other (popular science, discussion, etc.))
  • 241.
    Persson, Henry
    et al.
    Brandteknik, skydd (BRs ).
    Simonson, Margaret
    Brandteknik, skydd (BRs ).
    Rosén, Fredrik
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Ethanol tank fire fighting to be presented at a workshop2011In: BrandPosten, no 43, p. 24-25Article in journal (Other (popular science, discussion, etc.))
  • 242.
    Pålsson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Kalibrering av ugnar genom mätning av värmeflöde2000In: BrandPosten, no 22, p. 6-Article in journal (Other (popular science, discussion, etc.))
  • 243.
    Pålsson, Johan
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Verifiering av datorprograms tillförlitlighet vid beräkning av temperaturer i brandexponerade konstruktioner2000In: BrandPosten, no 22, p. 5-Article in journal (Other (popular science, discussion, etc.))
  • 244.
    Pålsson, Johan
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Wickström, Ulf
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research.
    A scheme for verification of computer codes for calculating temperature in fire exposed structures2000Conference paper (Other academic)
  • 245.
    Reitan, Nina Kristine
    et al.
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research AS, Norge.
    Storesund, Karolina
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research AS, Norge.
    Rød, Bjarte
    University of Tromsø - The Arctic University of Norway.
    Pursiainen, Christer
    University of Tromsø - The Arctic University of Norway.
    Mira da Silva, Miguel
    INOV.
    Lange, David
    RISE, SP – Sveriges Tekniska Forskningsinstitut, SP Fire Research, Brandmotstånd.
    Petersen, Laura
    EMSC.
    Melkunaite, Laura
    DBI.
    Bouffier, Christian
    INERIS.
    IMPROVER D2.3 Evaluation of resilience concepts applied to criticalinfrastructure using existing methodologies2016Report (Refereed)
    Abstract [en]

    The current Deliverable of the IMPROVER H2020 project is the third and last in the project’s Work Package 2. While it draws heavily on previous work and deliverables, it shows the direction for the following workpackages, helping in their task to develop an approach for critical infrastructure (CI) resilience assessment which is applicable across Europe and to different infrastructure sectors as well as being compatible with the EU Risk Assessment guidelines.

     

    The current report combines the work done most notably in Task 2.4 and Task 2.5 as defined in the project’s work plan. These tasks aim to evaluate the contribution of individual resilience concepts to the resilience of critical infrastructure and to compare a number of existing methodologies for implementation of resilience concepts to critical infrastructure.

     

    In short, a set of existing, relevant, resilience analysis or assessment approaches were identified that. Based on well-defined criteria, three of the approaches were selected for more detailed comparison. In Chapter 1, these three approaches are concisely presented and reviewed. In Chapter 2, a set of several individual indicators that are widely used in resilience analysis are selected to be used as ‘test’ indicators to discuss their use vis-à-vis the selected three approaches. Chapter 3 presents four fictional scenarios, based on the projects living labs and representing different sectors of critical infrastructure in different countries. In Chapter 4, the use of the selected set of indicators is illustrated both vis-à-vis the three selected approaches and the four scenarios. Chapter 5 goes deeper in this discussion, and demonstrates how each of the approaches could be used against the four scenarios. Finally, in Chapter 6 the three critical infrastructure resilience analysis or assessment approaches are evaluated and their relative performance compared, identifying their pros and cons based on the author’s experiences from using the methodologies for the illustrations and demonstration. A more detailed, qualitative, comparison of the functioning of the three methodologies against the chosen criteria is also given.

     

    The feedback from illustrations and demonstrations of the three selected methodologies shows that all approaches have pros and cons. Moreover, there seems not to be any strict objective way to evaluate the approaches, but much depends on what one wants to do with a resilience analysis or assessment approach, and how much one is ready put effort and time to it, and who is doing it.

     

    These notions lead to the conclusion that, first, in the subsequent phases the IMPROVER project should aim at combining – in so far it is possible and commensurable – the identified/perceived pros while avoiding the identified/perceived cons. Second, the IMPROVER project should aim at developing a CI resilience assessment approach which can utilise the strengths of the analysis methods shown taking into account the idiosyncrasies of different type of CI and its operators. Such an assessment approach should take the form of a framework that combines a resilience analysis and a resilience evaluation methodology and is compatible with the EU Risk Assessment Guidelines.

    Download full text (pdf)
    IMPROVER D2.3
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