A New Modulation for Intrinsically Secure Radio Channel in Wireless Systems

被引:0
|
作者
Lorenzo Mucchi
Luca Simone Ronga
Leonardo Cipriani
机构
[1] University of Florence,Department of Electronics and Telecommunications
[2] Italy,undefined
[3] CNIT – University of Florence Unit,undefined
来源
Wireless Personal Communications | 2009年 / 51卷
关键词
Security; Modulation; Noise loop; Wireless communications;
D O I
暂无
中图分类号
学科分类号
摘要
Due to the enormous spreading of applied wireless networks, security is actually one of the most important issues for telecommunications. One of the main issue in the field of securing wireless information exchanging is the initial common knowledge between source and destination. A shared secret is normally mandatory in order to decide the encryption (algorithm or code or key) of the information stream. It is usual to exchange this common a priori knowledge by using a “secure” channel. Nowadays a secure wireless channel is not possible. In fact normally the common a priori knowledge is already established (but this is not secure) or by using a non-radio channel (that implies a waste of time and resource). This contribution deals with the proposal of a new modulation technique ensuring secure communication in a full wireless environment. The information is modulated, at physical layer, by the thermal noise experienced by the link between two terminals. A loop scheme is designed for unique recovering of mutual information. The probability of error/detection is analytically derived for the legal users and for the third unwanted listener (passive or active attacker). Both the case of passive and active attacks have also been implemented and simulated by using Matlab-Simulink software. The analytical results have been compared to the simulated ones. All the results show that the performance of the proposed scheme yields the advantage of intrinsic security, i.e., the mutual information cannot be physically demodulated (passive attack) or denied (active attack) by a third terminal.
引用
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页码:67 / 80
页数:13
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