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Search: WFRF:(Chen Bangdao)

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1.
  • Huang, Xin, et al. (author)
  • Human interactive secure key and ID exchange protocols in body sensor networks
  • 2013
  • In: IET Information Security. - 1751-8709 .- 1751-8717. ; 7:1, s. 30-38
  • Journal article (peer-reviewed)abstract
    • A body sensor network (BSN) is typically a wearable wireless sensor network. Security protection is critical to BSNs, since they collect sensitive personal information. Generally speaking, security protection of BSN relies on identity (ID) and key distribution protocols. Most existing protocols are designed to run in general wireless sensor networks, and are not suitable for BSNs. After carefully examining the characteristics of BSNs, the authors propose human interactive empirical channel-based security protocols, which include an elliptic curve Diffie–Hellman version of symmetric hash commitment before knowledge protocol and an elliptic curve Diffie–Hellman version of hash commitment before knowledge protocol. Using these protocols, dynamically distributing keys and IDs become possible. As opposite to present solutions, these protocols do not need any pre-deployment of keys or secrets. Therefore compromised and expired keys or IDs can be easily changed. These protocols exploit human users as temporary trusted third parties. The authors, thus, show that the human interactive channels can help them to design secure BSNs.
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2.
  • Huang, Xin, et al. (author)
  • Human interactive secure key and ID exchange protocols in body sensor networks
  • 2013
  • In: IET Information Security. - : Institution of Engineering and Technology. - 1751-8709 .- 1751-8717. ; 7:1, s. 30-38
  • Journal article (peer-reviewed)abstract
    • A body sensor network (BSN) is typically a wearable wireless sensor network. Security protection is critical to BSNs, since they collect sensitive personal information. Generally speaking, security protection of BSN relies on identity (ID) and key distribution protocols. Most existing protocols are designed to run in general wireless sensor networks, and are not suitable for BSNs. After carefully examining the characteristics of BSNs, the authors propose human interactive empirical channel-based security protocols, which include an elliptic curve Diffie–Hellman version of symmetric hash commitment before knowledge protocol and an elliptic curve Diffie–Hellman version of hash commitment before knowledge protocol. Using these protocols, dynamically distributing keys and IDs become possible. As opposite to present solutions, these protocols do not need any pre-deployment of keys or secrets. Therefore compromised and expired keys or IDs can be easily changed. These protocols exploit human users as temporary trusted third parties. The authors, thus, show that the human interactive channels can help them to design secure BSNs.
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  • Result 1-2 of 2
Type of publication
journal article (2)
Type of content
peer-reviewed (2)
Author/Editor
Wang, Qinghua (2)
Huang, Xin (2)
Zheng, Yan (2)
Chen, Bangdao (2)
Markham, Andrew (2)
Roscoe, Andrew Willi ... (2)
University
Kristianstad University College (2)
Language
English (2)
Research subject (UKÄ/SCB)
Engineering and Technology (2)
Year

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