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iARC: Secret Key Generation for Resource Constrained Devices by Inducing Artificial Randomness in the Channel

Published: 14 April 2015 Publication History

Abstract

The existing secret key generation schemes for body-worn devices using wireless channel characteristics, e.g., received signal strength indicator (RSSI) are dependent on the node mobility and have very low bit rate. In this work, we propose a novel mobility independent RSSI based secret key generation protocol - iARC, which induces artificial randomness in the channel by employing dual antennas and dynamic frequency hopping effectively.

References

[1]
C. Javali, G. Revadigar, L. Libman, and S. Jha. SeAK: Secure Authentication and Key Generation Protocol based on Dual Antennas for Wireless Body Area Networks. In Proc. RFIDsec, 2014.
[2]
L. Shi, J. Yuan, S. Yu, and M. Li. ASK-BAN: Authenticated Secret Key Extraction Utilizing Channel Characteristics for Body Area Networks. In Proc. ACM WiSec, 2013.

Cited By

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  • (2024)A dynamic symmetric key generation at wireless link layer: information-theoretic perspectivesEURASIP Journal on Wireless Communications and Networking10.1186/s13638-024-02396-y2024:1Online publication date: 27-Aug-2024
  • (2022)A Survey on Wireless Wearable Body Area Networks: A Perspective of Technology and EconomySensors10.3390/s2220772222:20(7722)Online publication date: 11-Oct-2022
  • (2021)Cooperative Physical Layer Secret Key Generation by Virtual Link EstimationPhysical Layer Security10.1007/978-3-030-55366-1_5(99-128)Online publication date: 25-Jan-2021
  • Show More Cited By

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  1. iARC: Secret Key Generation for Resource Constrained Devices by Inducing Artificial Randomness in the Channel

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    Published In

    cover image ACM Conferences
    ASIA CCS '15: Proceedings of the 10th ACM Symposium on Information, Computer and Communications Security
    April 2015
    698 pages
    ISBN:9781450332453
    DOI:10.1145/2714576
    Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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    Association for Computing Machinery

    New York, NY, United States

    Publication History

    Published: 14 April 2015

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    Author Tags

    1. physical layer security
    2. secret key generation
    3. wireless body area networks

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    ASIA CCS '15
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    ASIA CCS '15: 10th ACM Symposium on Information, Computer and Communications Security
    April 14 - March 17, 2015
    Singapore, Republic of Singapore

    Acceptance Rates

    ASIA CCS '15 Paper Acceptance Rate 48 of 269 submissions, 18%;
    Overall Acceptance Rate 418 of 2,322 submissions, 18%

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    Cited By

    View all
    • (2024)A dynamic symmetric key generation at wireless link layer: information-theoretic perspectivesEURASIP Journal on Wireless Communications and Networking10.1186/s13638-024-02396-y2024:1Online publication date: 27-Aug-2024
    • (2022)A Survey on Wireless Wearable Body Area Networks: A Perspective of Technology and EconomySensors10.3390/s2220772222:20(7722)Online publication date: 11-Oct-2022
    • (2021)Cooperative Physical Layer Secret Key Generation by Virtual Link EstimationPhysical Layer Security10.1007/978-3-030-55366-1_5(99-128)Online publication date: 25-Jan-2021
    • (2020)Ephemeral Secrets: Multi-Party Secret Key Acquisition for Secure IEEE 802.11 Mobile Ad Hoc CommunicationIEEE Access10.1109/ACCESS.2020.29701478(24242-24257)Online publication date: 2020
    • (2019)Secret Key Agreement Schemes in IOT Based Wireless Body Area Network2019 International Conference on Issues and Challenges in Intelligent Computing Techniques (ICICT)10.1109/ICICT46931.2019.8977632(1-5)Online publication date: Sep-2019
    • (2016)Secure key generation and distribution protocol for wearable devices2016 IEEE International Conference on Pervasive Computing and Communication Workshops (PerCom Workshops)10.1109/PERCOMW.2016.7457058(1-4)Online publication date: Mar-2016

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