Non-Reciprocity Compensation Combined with Turbo Codes for Secret Key Generation in Vehicular Ad Hoc Social IoT Networks
August 03, 2018 Β· Declared Dead Β· π IEEE Internet of Things Journal
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Authors
Gregory Epiphaniou, Petros Karadimas, Dhouha Kbaier Ben Ismail, Haider Al-Khateeb, Ali Dehghantanha, Kim-Kwang Raymond Choo
arXiv ID
1808.01202
Category
cs.CR: Cryptography & Security
Cross-listed
cs.IT
Citations
44
Venue
IEEE Internet of Things Journal
Last Checked
6 months ago
Abstract
The physical attributes of the dynamic vehicle-to-vehicle (V2V) propagation channel can be utilised for the generation of highly random and symmetric cryptographic keys. However, in a physical-layer key agreement scheme, non-reciprocity due to inherent channel noise and hardware impairments can propagate bit disagreements. This has to be addressed prior to the symmetric key generation which is inherently important in social Internet of Things (IoT) networks, including in adversarial settings (e.g. battlefields). In this paper, we parametrically incorporate temporal variability attributes, such as three-dimensional (3D) scattering and scatterers mobility. Accordingly, this is the first work to incorporate such features into the key generation process by combining non-reciprocity compensation with turbo codes. Preliminary results indicate a significant improvement when using Turbo Codes in bit mismatch rate (BMR) and key generation rate (KGR) in comparison to sample indexing techniques.
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