Nonreciprocity compensation combined with turbo codes for secret key generation in vehicular ad hoc social IoT networks

G Epiphaniou, P Karadimas, DKB Ismail… - IEEE Internet of …, 2017 - ieeexplore.ieee.org
The physical attributes of the dynamic vehicle-to-vehicle propagation channel can be
utilized for the generation of highly random and symmetric cryptographic keys. However, in a …

A simple physical-layer key generation for frequency-division duplexing (FDD)

W Henkel, M Namachanja - 2021 15th International …, 2021 - ieeexplore.ieee.org
Common randomness of channels offers the possibility to create cryptographic keys without
the need for a key exchange procedure. Channel reciprocity for TDD (time-division …

Reciprocity for physical layer security with wireless FDD and in wireline communications

W Henkel, OA Graur, NS Islam, U Pagel… - 2018 IEEE …, 2018 - ieeexplore.ieee.org
The reciprocity of the channel transfer functions between legitimate users changing
randomly delivers the common randomness used in physical-layer key generation. Time …

[PDF][PDF] Wireline physical-layer key generation

W Henkel, O Graur, U Pagel - Proceedings of the 11th Workshop on …, 2017 - trsys-wh.de
Physical layer security is typically linked to TDD wireless applications, where roughly a
reciprocity of the channel can be assumed. This creates the required common randomness …

[PDF][PDF] Reciprocity for Physical Layer Security with Wireless FDD and in Wireline Communications

N Manak, O Can - trsys-wh.de
The reciprocity of the channel transfer functions between legitimate users changing
randomly delivers the common randomness used in physical-layer key generation. Time …