Key agreement over Gaussian wiretap models with known interference at the transmitter

Information Theory Proceedings(2012)

引用 1|浏览0
暂无评分
摘要
We investigate the (forward) key capacity of a Gaussian state-dependent wiretap channel (G-SWC) paralleled with a public channel having capacity Cp ϵ [0, ∞). This model consists of a sender, a main receiver, and a wiretapper. The channel state information (CSI) is an additive white Gaussian interference (AWGI) which is non-causally known at the sender. A lower bound (LB) on the key capacity is achieved by using a generalized version of the dirty paper coding (DPC) in which the transmitted signal is correlated with the interference. The correlation coefficient is to be determined by Cp. The achievable scheme is asymptotically optimum as Cp → ∞. This optimum key capacity is also asymptotically achievable for any Cp ≥ 0 in high signal to interference ratio (SIR) regime. In this regime, the public channel has negligible contribution in key generation. Generally, the CSI enhances the key capacity such that it exceeds the main channel capacity of the G-SWC in low SIR regime.
更多
查看译文
关键词
AWGN channels,channel capacity,encoding,radio receivers,radio transmitters,radiofrequency interference,Gaussian state-dependent wiretap channel,additive white Gaussian interference,channel capacity,channel state information,correlation coefficient,dirty paper coding,forward key capacity,known interference,main receiver,optimum key capacity,public channel,signal to interference ratio,transmitter,wiretapper
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要