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    Secure Mutual Self-Authenticable Mechanism for Wearable Devices

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    eya_et_al_2016.pdf (1.255Mb)
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    Publication date
    2016-03
    Author
    Eya, Nnabuike N.
    Mapoka, Trust T.
    Shepherd, Simon J.
    Abd-Alhameed, Raed A.
    Elfergani, Issa T.
    Rodriguez, Jonathan
    Keyword
    Wearable devices; Self-authentication; NFC; PPP; EAP
    Rights
    (c) 2017 Infonomics Society. Full-text reproduced in accordance with the publisher's self-archiving policy.
    Peer-Reviewed
    Yes
    
    Metadata
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    Abstract
    Due to the limited communication range of wearable devices, there is the need for wearable devices to communicate amongst themselves, supporting devices and the internet or to the internet. Most wearable devices are not internet enabled and most often need an internet enabled broker device or intermediate device in order to reach the internet. For a secure end to end communication between these devices security measures like authentication must be put in place in other to prevent unauthorised access to information given the sensitivity of the information collected and transmitted. Therefore, there are other existing authentication solutions for wearable devices but these solutions actively involve from time to time the user of the device which is prone to a lot of challenges. As a solution to these challenges, this paper proposes a secure point-to-point Self-authentication mechanism that involves device to device interaction. This work exploits existing standards and framework like NFC, PPP, EAP etc. in other to achieve a device compatible secure authentication protocol amongst wearable device and supporting devices..
    URI
    http://hdl.handle.net/10454/12067
    Version
    Published version
    Citation
    Eya N, Mapoka TT, Shepherd SJ et al (2016) Secure Mutual Self-Authenticable Mechanism for Wearable Devices. International Journal for Information Security Research. 6(1): 625-635.
    Link to publisher’s version
    https://doi.org/10.20533/ijisr.2042.4639.2016.0072
    Type
    Article
    Collections
    Engineering and Informatics Publications

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