Gaussian wiretap channel with an amplitude constraint

Omur Ozel, E. Ekrem, S. Ulukus
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引用次数: 15

Abstract

We consider the Gaussian wiretap channel with an amplitude constraint, i.e., a peak power constraint, on the channel input. We show that the entire rate-equivocation region of the Gaussian wiretap channel with an amplitude constraint is obtained by discrete input distributions with finite support. We prove this result by considering the existing single-letter description of the rate-equivocation region, and showing that discrete distributions with finite support exhaust this region. Our result highlights an important difference between the peak power constraint and the average power constraint cases: Although, in the average power constraint case, both the secrecy capacity and the capacity can be achieved simultaneously, our results show that in the peak power constraint case, in general, there is a tradeoff between the secrecy capacity and the capacity, in the sense that, both may not be achieved simultaneously.
具有振幅约束的高斯窃听通道
我们考虑具有幅度约束的高斯窃听通道,即通道输入上的峰值功率约束。我们证明了具有振幅约束的高斯窃听信道的整个速率模糊区域是由有限支持的离散输入分布获得的。考虑到现有的速率模糊区域的单字母描述,我们证明了这一结果,并表明具有有限支持的离散分布耗尽了该区域。我们的结果突出了峰值功率约束和平均功率约束情况之间的一个重要区别:尽管在平均功率约束情况下,保密能力和容量可以同时实现,但我们的结果表明,在峰值功率约束情况下,一般来说,保密能力和容量之间存在权衡,即两者可能无法同时实现。
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