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Utilizing a Game Theoretical Approac...
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ProQuest Information and Learning Co.
Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts.
Record Type:
Language materials, manuscript : Monograph/item
Title/Author:
Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts./
Author:
Golchubian, Arash.
Description:
1 online resource (84 pages)
Notes:
Source: Masters Abstracts International, Volume: 57-04.
Subject:
Computer science. -
Online resource:
click for full text (PQDT)
ISBN:
9780355676297
Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts.
Golchubian, Arash.
Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts.
- 1 online resource (84 pages)
Source: Masters Abstracts International, Volume: 57-04.
Thesis (M.S.)--Florida Atlantic University, 2017.
Includes bibliographical references
In this research, a new reputation-based model is utilized to disincentivize collusion of defenders and attackers in Software Defined Networks (SDN), and also, to disincentivize dishonest mining strategies in Blockchain. In the context of SDN, the model uses the reputation values assigned to each entity to disincentivize collusion with an attacker. Our analysis shows that not-colluding actions become Nash Equilibrium using the reputationbased model within a repeated game setting. In the context of Blockchain and mining, we illustrate that by using the same socio-rational model, miners not only are incentivized to conduct honest mining but also disincentivized to commit to any malicious activities against other mining pools. We therefore show that honest mining strategies become Nash Equilibrium in our setting.
Electronic reproduction.
Ann Arbor, Mich. :
ProQuest,
2018
Mode of access: World Wide Web
ISBN: 9780355676297Subjects--Topical Terms:
573171
Computer science.
Index Terms--Genre/Form:
554714
Electronic books.
Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts.
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Utilizing a Game Theoretical Approach to Prevent Collusion and Incentivize Cooperation in Cybersecurity Contexts.
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1 online resource (84 pages)
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Source: Masters Abstracts International, Volume: 57-04.
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Adviser: Mehrdad Nojoumian.
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Thesis (M.S.)--Florida Atlantic University, 2017.
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Includes bibliographical references
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In this research, a new reputation-based model is utilized to disincentivize collusion of defenders and attackers in Software Defined Networks (SDN), and also, to disincentivize dishonest mining strategies in Blockchain. In the context of SDN, the model uses the reputation values assigned to each entity to disincentivize collusion with an attacker. Our analysis shows that not-colluding actions become Nash Equilibrium using the reputationbased model within a repeated game setting. In the context of Blockchain and mining, we illustrate that by using the same socio-rational model, miners not only are incentivized to conduct honest mining but also disincentivized to commit to any malicious activities against other mining pools. We therefore show that honest mining strategies become Nash Equilibrium in our setting.
520
$a
This thesis is laid out in the following manner. In chapter 2 an introduction to game theory is provided followed by a survey of previous works in game theoretic network security, in chapter 3 a new reputation-based model is introduced to be used within the context of a Software Defined Network (SDN), in chapter 4 a reputation-based solution concept is introduced to force cooperation by each mining entity in Blockchain, and finally, in chapter 5, the concluding remarks and future works are presented.
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Electronic reproduction.
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Ann Arbor, Mich. :
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ProQuest,
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2018
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Mode of access: World Wide Web
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Computer science.
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ProQuest Information and Learning Co.
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Florida Atlantic University.
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Computer Science.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=10687507
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click for full text (PQDT)
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