DocumentCode :
3235692
Title :
Fading cognitive multiple-access channels with confidential messages
Author :
Liu, Ruoheng ; Liang, Yingbin ; Poor, H. Vincent
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., Princeton, NJ, USA
fYear :
2009
fDate :
Sept. 30 2009-Oct. 2 2009
Firstpage :
371
Lastpage :
377
Abstract :
The fading cognitive multiple-access channel with confidential messages (MAC-CM) is investigated, in which two users attempt to transmit common information to a destination and user 1 also has confidential information intended for the destination. User 1 views user 2 as an eavesdropper and wishes to keep its confidential information as secret as possible from user 2. The multiple-access channel (both the user-to-user channel and the user-to-destination channel) is corrupted by multiplicative fading gain coefficients in addition to additive white Gaussian noise. The channel state information (CSI) is assumed to be known at both the users and the destination. A parallel MAC-CM with independent subchannels is first studied. The secrecy capacity region of the parallel MAC-CM is established, which gives the secrecy capacity region of the parallel MAC-CM with degraded subchannels. Next, the secrecy capacity region is established for the parallel Gaussian MAC-CM, which is used to study the fading MAC-CM. By assuming both users know the CSI, users can dynamically change their transmission power with the channel realization to achieve the best performance.
Keywords :
AWGN; fading channels; multi-access systems; telecommunication security; additive white Gaussian noise; channel state information; confidential information; confidential messages; fading cognitive multiple-access channels; independent subchannels; multiplicative fading gain coefficients; parallel Gaussian MAC-CM; parallel MAC-CM; secrecy capacity region; user-to-destination channel; user-to-user channel; Channel state information; Communication system security; Cryptography; Degradation; Fading; Force measurement; Telecommunication network reliability; Transmitters; Wireless communication; Wireless networks; Secure communication; equivocation; fading channel; multiple-access channel; secrecy capacity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communication, Control, and Computing, 2009. Allerton 2009. 47th Annual Allerton Conference on
Conference_Location :
Monticello, IL
Print_ISBN :
978-1-4244-5870-7
Type :
conf
DOI :
10.1109/ALLERTON.2009.5394789
Filename :
5394789
Link To Document :
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