TY - GEN
T1 - Secret Key Generation from a Two Component Compound Source with Rate Constrained One Way Communication
T2 - 2019 IEEE International Workshop on Information Forensics and Security, WIFS 2019
AU - Baur, Sebastian
AU - Cai, Ning
AU - Wiese, Moritz
AU - Boche, Holger
N1 - Publisher Copyright:
© 2019 IEEE.
PY - 2019/12
Y1 - 2019/12
N2 - Secret key generation at two terminals is considered. Each terminal observes one of the outputs of a two component source. The two source outputs are correlated. Additionally one terminal can send a message to the second terminal via a noiseless public channel. It is assumed that this message is rate constrained. An eavesdropper with access to the public communication should be kept ignorant of the secret key. The maximum secret key rate that can be achieved such that the key is uniformly distributed and meets the perfect secrecy requirement is determined. This result is established for a compound source model.
AB - Secret key generation at two terminals is considered. Each terminal observes one of the outputs of a two component source. The two source outputs are correlated. Additionally one terminal can send a message to the second terminal via a noiseless public channel. It is assumed that this message is rate constrained. An eavesdropper with access to the public communication should be kept ignorant of the secret key. The maximum secret key rate that can be achieved such that the key is uniformly distributed and meets the perfect secrecy requirement is determined. This result is established for a compound source model.
UR - https://www.scopus.com/pages/publications/85083024289
U2 - 10.1109/WIFS47025.2019.9035091
DO - 10.1109/WIFS47025.2019.9035091
M3 - Conference contribution
AN - SCOPUS:85083024289
T3 - 2019 IEEE International Workshop on Information Forensics and Security, WIFS 2019
BT - 2019 IEEE International Workshop on Information Forensics and Security, WIFS 2019
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 9 December 2019 through 12 December 2019
ER -