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The Degraded Poisson Wiretap Channel

机译:退化的Poisson窃听通道

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Optical and near-optical band communication systems are known to be intrinsically more secure than comparable RF channels, due to their narrow beamwidths and, in some cases, their high atmospheric absorption. The use of coding against wiretapping for such channels is investigated. For the degraded Poisson wiretap channel model, the secrecy capacity is determined exactly. Moreover, a complete characterization of the rate-equivocation region is presented. For achievability, an optimal code is constructed explicitly by using a code designed by Wyner for the Poisson channel. The converse is proved in two ways: the first method leverages the low-SNR nature of the channel and relies only on simple properties of conditional expectation and classical information inequalities. The second method uses a link recently established between minimum mean square error estimation and mutual information over Poisson channels.
机译:已知光和近光带通信系统由于其窄的波束宽度以及在某些情况下的高大气吸收性,其本质上比同类的RF信道更安全。研究了针对这种信道的针对窃听的编码的使用。对于降级的Poisson窃听通道模型,精确确定了保密能力。此外,提出了速率等同区域的完整特征。为了达到可实现性,通过使用Wyner为Poisson通道设计的代码来明确构造最佳代码。相反,可以通过两种方式证明:第一种方法利用了信道的低SN​​R特性,并且仅依赖于条件期望的简单属性和经典信息不等式。第二种方法使用最近在最小均方误差估计和泊松信道上的互信息之间建立的链接。

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