DocumentCode
12725
Title
MASK-BAN: Movement-Aided Authenticated Secret Key Extraction Utilizing Channel Characteristics in Body Area Networks
Author
Lu Shi ; Jiawei Yuan ; Shucheng Yu ; Ming Li
Author_Institution
Dept. of Comput. Sci., Univ. of Arkansas at Little Rock, Little Rock, AR, USA
Volume
2
Issue
1
fYear
2015
fDate
Feb. 2015
Firstpage
52
Lastpage
62
Abstract
Recently, most wireless network security schemes merely based on physical layer characteristics tackle the two fundamental issues-device authentication and secret key extraction separately. It remains an open problem to simultaneously achieve device authentication and fast secret key extraction merely using wireless physical layer characteristics, without the help of advanced hardware or out-of-band channel. In this paper, we answer this open problem in the setting of wireless body area networks (BANs). We propose MASK-BAN, a lightweight fast authenticated secret key extraction scheme for intra-BAN communication. Our scheme neither introduces advanced hardware nor relies on out-of-band channels. To perform device authentication and fast secret key extraction at the same time, we exploit the heterogeneous channel characteristics among the collection of on-body channels during body motion. On one hand, MASK-BAN achieves authentication through multihop stable channels, which greatly reduces the false positive rate as compared to existing work. On the other hand, based on dynamic channels, key extraction between two on-body devices with multihop relay nodes is modeled as a max-flow problem, and a novel collaborative secret key generation algorithm is introduced to maximize the key generation rate. Extensive real-world experiments on low-end commercial-off-the-shelf sensor devices validate MASK-BAN´s great authentication capability and high-secret key generation rate.
Keywords
body area networks; private key cryptography; relay networks (telecommunication); telecommunication security; wireless channels; MASK-BAN; body area networks; body motion; device authentication; intra-BAN communication; movement-aided authenticated secret key extraction; on-body channels; out-of-band channels; relay nodes; wireless network security schemes; wireless physical layer characteristics; Authentication; Biomedical monitoring; Communication system security; Intelligent sensors; Internet of Things; Medical devices; Medical services; Wireless communication; Wireless sensor networks; Authenticated key generation; physical layer; received signal strength (RSS); sensor; wireless body area network (WBAN);
fLanguage
English
Journal_Title
Internet of Things Journal, IEEE
Publisher
ieee
ISSN
2327-4662
Type
jour
DOI
10.1109/JIOT.2015.2391113
Filename
7006641
Link To Document