Towards Denial-Of Key Agreement Protocols

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Date

Authors

Ustaoğlu, Berkant

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Green Open Access

Yes

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Top 10%
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Top 10%
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Abstract

Denial of service resilience is an important practical consideration for key agreement protocols in any hostile environment such as the Internet. There are well-known models that consider the security of key agreement protocols, but denial of service resilience is not considered as part of these models. Many protocols have been argued to be denial-of-service-resilient, only to be subsequently broken or shown ineffective. In this work we propose a formal definition of denial of service resilience, a model for secure authenticated key agreement, and show how security and denial of service resilience can be considered in a common framework, with a particular focus on client puzzles. The model accommodates a variety of techniques for achieving denial of service resilience, and we describe one such technique by exhibiting a denial-of-service-resilient secure authenticated key agreement protocol. Our approach addresses the correct integration of denial of service countermeasures with the key agreement protocol to prevent hijacking attacks that would otherwise render the countermeasures irrelevant. © 2009 Springer Berlin Heidelberg.

Description

14th Australasian Conference on Information Security and Privacy, ACISP 2009; Brisbane, QLD; Australia; 1 July 2009 through 3 July 2009

Keywords

Network security, Key agreement protocols, Authenticated key agreement, Client puzzles, Denial of service, Formal definition, Hostile environments, cryptography, Authenticated key agreement, Hostile environments, Formal definition, key agreement, protocols, 303, Network security, Client puzzles, Denial of service, denial of service, Key agreement protocols

Fields of Science

0102 computer and information sciences, 02 engineering and technology, 01 natural sciences, 0202 electrical engineering, electronic engineering, information engineering

Citation

Stebila, D., and Ustaoğlu, B. (2009). Towards denial-of-service-resilient key agreement protocols. Lecture Notes in Computer Science, 5594 LNCS, 389-406. doi:10.1007/978-3-642-02620-1_27

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OpenCitations Citation Count
15

Volume

5594 LNCS

Issue

Start Page

389

End Page

406
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CrossRef : 14

Scopus : 14

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Mendeley Readers : 39

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