DocumentCode
3626061
Title
Secure Nested Codes for Type II Wiretap Channels
Author
Ruoheng Liu;Yingbin Liang;H. Vincent Poor;Predrag Spasojevic
Author_Institution
Department of Electrical Engineering, Princeton University, Princeton, NJ 08544. email: rliu@princeton.edu
fYear
2007
Firstpage
337
Lastpage
342
Abstract
This paper considers the problem of secure coding design for a type II wiretap channel, where the main channel is noiseless and the eavesdropper channel is a general binary-input symmetric-output memoryless channel. The proposed secure error-correcting code has a nested code structure. Two secure nested coding schemes are studied for a type II Gaussian wiretap channel. The nesting is based on cosets of a good code sequence for the first scheme and on cosets of the dual of a good code sequence for the second scheme. In each case, the corresponding achievable rate-equivocation pair is derived based on the threshold behavior of good code sequences. The two secure coding schemes together establish an achievable rate-equivocation region, which almost covers the secrecy capacity-equivocation region in this case study. The proposed secure coding scheme is extended to a type II binary symmetric wiretap channel. A new achievable perfect secrecy rate, which improves upon the previously reported result by Thangaraj et al., is derived for this channel.
Keywords
"Error correction codes","AWGN","Wireless communication","Telecommunication network reliability","Communication system security","Channel coding","Parity check codes","Additive white noise","Lakes","Memoryless systems"
Publisher
ieee
Conference_Titel
Information Theory Workshop, 2007. ITW ´07. IEEE
Print_ISBN
1-4244-1563-2
Type
conf
DOI
10.1109/ITW.2007.4313097
Filename
4313097
Link To Document