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Publikationstyp: Konferenz: Paper
Art der Begutachtung: Peer review (Publikation)
Titel: Dynamic group key agreement for resource-constrained devices using blockchains
Autor/-in: Taçyıldız, Yaşar Berkay
Ermiş, Orhan
Gür, Gürkan
Alagöz, Fatih
et. al: No
DOI: 10.1007/978-3-030-61638-0_4
10.21256/zhaw-20682
Tagungsband: Applied Cryptography and Network Security Workshops
Herausgeber/-in des übergeordneten Werkes: Zhou, Jianying
Seite(n): 58
Seiten bis: 76
Angaben zur Konferenz: 18th International Conference on Applied Cryptography and Network Security, Rome, Italy, 19-22 October 2020
Erscheinungsdatum: Okt-2020
Reihe: Lecture Notes in Computer Science
Reihenzählung: 12418
Verlag / Hrsg. Institution: Springer
Verlag / Hrsg. Institution: Cham
ISBN: 978-3-030-61637-3
978-3-030-61638-0
Sprache: Englisch
Schlagwörter: Group key agreement; Blockchain; IoT; Hyperledger fabric
Fachgebiet (DDC): 005: Computerprogrammierung, Programme und Daten
Zusammenfassung: Dynamic group key agreement (DGKA) protocols are one of the key security primitives to secure multiparty communications in decentralized and insecure environments while considering the instant changes in a communication group. However, with the ever-increasing number of connected devices, traditional DGKA protocols have performance challenges since each member in the group has to make several computationally intensive operations while verifying the keying materials to compute the resulting group key. To overcome this issue, we propose a new approach for DGKA protocols by utilizing Hyperledger Fabric framework as a blockchain platform. To this end, we migrate the communication and verification overhead of DGKA participants to the blockchain network in our developed scheme. This paradigm allows a flexible DGKA protocol that considers resource-constrained entities and trade-offs regarding distributed computation. According to our performance analysis, participants with low computing resources can efficiently utilize our protocol. Furthermore, we have demonstrated that our protocol has the same security features as other comparable protocols in the literature.
URI: https://digitalcollection.zhaw.ch/handle/11475/20682
Volltext Version: Eingereichte Version
Lizenz (gemäss Verlagsvertrag): Lizenz gemäss Verlagsvertrag
Departement: School of Engineering
Organisationseinheit: Institut für Informatik (InIT)
Publiziert im Rahmen des ZHAW-Projekts: INtelligent Security and PervasIve tRust for 5G and Beyond (INSPIRE-5Gplus)
Enthalten in den Sammlungen:Publikationen School of Engineering

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Taçyıldız, Y. B., Ermiş, O., Gür, G., & Alagöz, F. (2020). Dynamic group key agreement for resource-constrained devices using blockchains [Conference paper]. In J. Zhou (Ed.), Applied Cryptography and Network Security Workshops (pp. 58–76). Springer. https://doi.org/10.1007/978-3-030-61638-0_4
Taçyıldız, Y.B. et al. (2020) ‘Dynamic group key agreement for resource-constrained devices using blockchains’, in J. Zhou (ed.) Applied Cryptography and Network Security Workshops. Cham: Springer, pp. 58–76. Available at: https://doi.org/10.1007/978-3-030-61638-0_4.
Y. B. Taçyıldız, O. Ermiş, G. Gür, and F. Alagöz, “Dynamic group key agreement for resource-constrained devices using blockchains,” in Applied Cryptography and Network Security Workshops, Oct. 2020, pp. 58–76. doi: 10.1007/978-3-030-61638-0_4.
TAÇYILDIZ, Yaşar Berkay, Orhan ERMIŞ, Gürkan GÜR und Fatih ALAGÖZ, 2020. Dynamic group key agreement for resource-constrained devices using blockchains. In: Jianying ZHOU (Hrsg.), Applied Cryptography and Network Security Workshops. Conference paper. Cham: Springer. Oktober 2020. S. 58–76. ISBN 978-3-030-61637-3
Taçyıldız, Yaşar Berkay, Orhan Ermiş, Gürkan Gür, and Fatih Alagöz. 2020. “Dynamic Group Key Agreement for Resource-Constrained Devices Using Blockchains.” Conference paper. In Applied Cryptography and Network Security Workshops, edited by Jianying Zhou, 58–76. Cham: Springer. https://doi.org/10.1007/978-3-030-61638-0_4.
Taçyıldız, Yaşar Berkay, et al. “Dynamic Group Key Agreement for Resource-Constrained Devices Using Blockchains.” Applied Cryptography and Network Security Workshops, edited by Jianying Zhou, Springer, 2020, pp. 58–76, https://doi.org/10.1007/978-3-030-61638-0_4.


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