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Guide to Disaster-Resilient Communication Networks

Specificaties
Paperback, blz. | Engels
Springer International Publishing | e druk, 2021
ISBN13: 9783030446871
Rubricering
Springer International Publishing e druk, 2021 9783030446871
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Samenvatting

This authoritative volume presents a comprehensive guide to the evaluation and design of networked systems with improved disaster resilience. The text offers enlightening perspectives on issues relating to all major failure scenarios, including natural disasters, disruptions caused by adverse weather conditions, massive technology-related failures, and malicious human activities.

Topics and features: describes methods and models for the analysis and evaluation of disaster-resilient communication networks; examines techniques for the design and enhancement of disaster-resilient systems; provides a range of schemes and algorithms for resilient systems; reviews various advanced topics relating to resilient communication systems; presents insights from an international selection of more than 100 expert researchers working across the academic, industrial, and governmental sectors.

This practically-focused monograph, providing invaluable support on topics of resilient networking equipment and software, is an essential reference for network professionals including network and networked systems operators, networking equipment vendors, providers of essential services, and regulators. The work can also serve as a supplementary textbook for graduate and PhD courses on networked systems resilience.

Specificaties

ISBN13:9783030446871
Taal:Engels
Bindwijze:paperback
Uitgever:Springer International Publishing

Inhoudsopgave

<p>1 Fundamentals of Communication Networks Resilience to Disasters and Massive Disruptions<br> Jacek Rak, David Hutchison, Janos Tapolcai, Rasa Bruzgiene, Massimo Tornatore, Carmen Mas-Machuca, Marija Furdek, and Paul Smith</p>

<p>Part I: Measures and Models for the Analysis and Evaluation of Disaster-resilient Communication Networks</p>

<p>2 Functional Metrics to Evaluate Network Vulnerability to Disasters<br> Carlos Natalino, Sasko Ristov, Lena Wosinska, and Marija Furdek</p>

<p>3 Vulnerability Evaluation of Networks to Multiple Failures based on Critical Nodes and Links<br> Amaro de Sousa and Dorabella Santos</p>

<p>4 How to Model and Enumerate Geographically Correlated Failure Events in Communication Networks<br> Balázs Vass, János Tapolcai, David Hay, Jorik Oostenbrink, and Fernando Kuipers</p>

<p>5 Comparing Destructive Strategies for Attacking Networks<br> Hale Cetinay, Carmen Mas-Machuca, Jose L. Marzo, Robert Kooij, and Piet Van Mieghem</p>

<p>6 Modelling of Software Failures<br> Bjarne E. Helvik, Petra Vizarreta, Poul E. Heegaard, Kishor Trivedi, and Carmen Mas-Machuca</p>

<p>Part II: Techniques for Design and Update of Disaster-resilient Systems</p>

<p>7 Improving the Survivability of Carrier Networks to Large-scale Disasters<br> Amaro de Sousa, Jacek Rak, Fábio Barbosa, Dorabella Santos, and Deepak Mehta</p>

<p>8 Security-aware Carrier Network Planning<br> Róza Goścień, Georgios Ellinas, Marija Furdek, Panayiotis Kolios, Piotr Lechowicz, Konstantinos Manousakis, Giannis Savva, Nina Skorin-Kapov, and Krzysztof Walkowiak</p>

9 Secure and Resilient Communications in the Industrial Internet<br> Mohammad Borhani, Madhusanka Liyanage, Ali Hassan Sodhro, Pardeep Kumar, Anca Delia Jurcut, and Andrei Gurtov<p></p>

<p>10 Reliable Control and Data Planes for Softwarized Networks<br> Carmen Mas-Machuca, Francesco Musumeci, Petra Vizarreta, Dimitrios Pezaros, Simon Jou¨ et, Massimo Tornatore, Ali Hmaity, Madhusanka Liyanage, Andrei Gurtov, and An Braeken</p>

<p>11 Emergency Networks for Post-disaster Scenarios<br> Gianluca Rizzo, Sasko Ristov, Thomas Fahringer, Marjan Gusev, Matija Dzanko, Ivana Bilic, Christian Esposito, and Torsten Braun</p>

<p>12 Quality-driven Schemes Enhancing Resilience of Wireless Networks under Weather Disruptions<br> Rasa Bruzgiene, Lina Narbutaite, Tomas Adomkus, Peter Pocta, Peter Brida, Juraj Machaj, Erich Leitgeb, Pirmin Pezzei, Hristo Ivanov, Nadezhda Kunicina, Anatolijs Zabasta, Jelena Caiko, and Antons Patlins</p>

<p>13 Free Space Optics System Reliability in the Presence of Weather-induced Disruptions<br> Hristo Ivanov, Erich Leitgeb, Daniel Kraus, Frank Marzano, Antonio Jurado-Navas, Sander Dorenbos, Rafael Perez-Jimenez, and Gert Freiberger</p>

<p>14 Alert-based Network Reconfiguration and Data Evacuation<br> Massimo Tornatore, Péter Babarczi, Omran Ayoub, Sifat Ferdousi, Rafael Lourenco, Johannes Zerwas, Andreas Blenk, Markus Klügel, and Wolfgang Kellerer</p>

<p>15 Resilient Techniques against Disruptions of Volatile Cloud Resources<br> Sasko Ristov, Thomas Fahringer, David Peer, Thanh-Phuong Pham, Marjan Gusev, and Carmen Mas-Machuca</p>

<p>16 Structural Methods to Improve the Robustness of Anycast Communications to Large-scale Failures<br> Amaro de Sousa, Dorabella Santos, Carlos Natalino, Lena Wosinska, Carmen Mas-Machuca, and Marija Furdek</p>

<p>Part III: Algorithms and Schemes for Resilient Systems</p>

<p>17 Fundamental Schemes to Determine Disjoint Paths for Multiple Failure Scenarios<br> Teresa Gomes, Luísa Jorge, Rita Girão-Silva, Jose Yallouz, Péter Babarczi, and Jacek Rak</p>

<p>18 Taxonomy of Schemes for Resilient Routing<br> Ivan Ganchev, Jacek Rak, Tibor Cinkler, and Máirtín O’Droma</p>

<p>19 Disaster-resilient Routing Schemes for Regional Failures<br> Teresa Gomes, Dorabella Santos, Rita Girão-Silva, Lúcia Martins, Boro Nedic, Matthias Gunkel, Balázs Vass, János Tapolcai, and Jacek Rak</p>

<p>20 Resilient SDN-based Routing against Rain Disruptions for Wireless Networks<br> Forough Yaghoubi, Marija Furdek, Ahmad Rostami, Peter Öhlén, and Lena Wosinska</p>

21 Optimization of Wireless Networks for Resilience to Adverse Weather Conditions<br> Michał Pióro, Emma Fitzgerald, Ilya Kalesnikau, Dritan Nace, and Jacek Rak<p></p>

<p>22 Enhancing Availability for Critical Services<br> Teresa Gomes, Lúcia Martins, Rita Girão-Silva, David Tipper, Alija Pašić, Balázs Vass, Luís Garrote, Urbano Nunes, Martin Zachariasen, and Jacek Rak</p>

<p>23 Detection of Attacks and Attack-survivable Routing in Carrier Networks<br> Marija Furdek, Federico Pederzolli, and Vincent W.S. Chan</p>

<p>24 Routing in Post-disaster Scenarios<br> Christian Esposito, Zhongliang Zhao, Gianluca Rizzo, Florin Pop, Elena Apostol, Cătălin Leordeanu, and Stefan Preda</p>

<p>Part IV: Advanced Topics in Resilient Communication Systems</p>

<p>25 Resilient SDN, CDN and ICN Technology and Solutions<br> Michał Aibin, Mirosław Kantor, Piotr Boryło, Heiko Niedermayer, Piotr Chołda, and Torsten Braun</p>

<p>26 Scalable and Collaborative Intrusion Detection and Prevention Systems Based on SDN and NFV<br> Agathe Blaise, Sandra Scott-Hayward, and Stefano Secci</p>

<p>27 Resilient NFV Technology and Solutions<br> Andrzej Kamisiński, Francesco Musumeci, Ali Hmaity, Massimo Tornatore, Marco Casazza, Stefano Secci, Arsham Farshad, David Hutchison, Bjarne E. Helvik, and Poul E. Heegaard</p>

<p>28 Resilience of 5G Mobile Communication Systems to Massive Disruptions<br> Tibor Cinkler, Akos Ladanyi, Jacek Rak, Christian Esposito, and Gianluca Rizzo</p>

<p>29 Design of Resilient Vehicle-to-Infrastructure Systems<br> Jacek Rak, Magnus Jonsson, Alexey Vinel, and Karol Jurczenia</p>

<p>30 Reliability Models for Multi-objective Design Problems<br> Dimitri Papadimitriou, Steven Latre, and Artur Tomaszewski</p>

<p>31 Analysing Disaster-induced Cascading Effects in Hybrid Critical Infrastructures: A Practical Approach<br> Sandra König, Antonios Gouglidis, Stefan Rass, Neil Adams, Paul Smith, and David Hutchison</p>

<p>32 Human and Organizational Issues for Resilient Communications<br> Tom Anderson, Jeremy Busby, Antonios Gouglidis, Karen Hough, David Hutchison, and Mark Rouncefield</p>

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        Guide to Disaster-Resilient Communication Networks