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Secrecy Transmission on Parallel Channels: Theoretical Limits and Performance of Practical Codes

机译:并行通道上的保密传输:实用代码的理论限制和性能

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We consider a system where an agent (Alice) aims at transmitting a message to a second agent (Bob) over a set of parallel channels, while keeping it secret from a third agent (Eve) by using physical layer security techniques. We assume that Alice perfectly knows the set of channels with respect to Bob, but she has only a statistical knowledge of the channels with respect to Eve. We derive bounds on the achievable outage secrecy rates, by considering coding either within each channel or across all parallel channels. Transmit power is adapted to the channel conditions, with a constraint on the average power over the whole transmission. We also focus on the maximum cumulative outage secrecy rate that can be achieved. Moreover, in order to assess the performance in a real life scenario, we consider the use of practical error correcting codes. We extend the definitions of security gap and equivocation rate, previously applied to the single additive white Gaussian noise channel, to Rayleigh distributed parallel channels, on the basis of the error rate targets and the outage probability. Bounds on these metrics are also derived, considering the statistics of the parallel channels. Numerical results are provided, that confirm the feasibility of the considered physical layer security techniques.
机译:我们考虑一个系统,其中代理程序(Alice)旨在通过一组并行通道将消息传输给第二个代理程序(Bob),同时通过使用物理层安全技术将消息与第三个代理程序(Eve)保密。我们假设爱丽丝完全了解有关鲍勃的频道,但是她只了解有关夏娃的频道的统计知识。通过考虑在每个通道内或在所有并行通道上进行编码,我们得出了可实现的中断保密率的界限。发射功率适合于信道条件,并限制了整个发射的平均功率。我们还将重点放在可以实现的最大累积停电保密率上。此外,为了评估现实生活中的性能,我们考虑使用实际的纠错码。在错误率目标和中断概率的基础上,我们将先前应用于单个加性高斯白噪声信道,瑞利分布并行信道的安全间隔和混淆率的定义扩展了。考虑并行通道的统计信息,还可以得出这些度量的界限。提供的数值结果证实了所考虑的物理层安全技术的可行性。

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