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Physical Layer Security over Wiretap Channels with Random Parameters

机译:具有随机参数的丝网通道的物理层安全性

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We study semantically secure communication over state dependent (SD) wiretap channels (WTCs) with non-causal channel state information (CSI) at the encoder. This model subsumes all other instances of CSI availability as special cases, and calls for an efficient utilization of the state sequence both for reliability and security purposes. A lower bound on the secrecy-capacity, that improves upon the previously best known result by Chen and Han Vinck, is derived based on a novel superposition coding scheme. The improvement over the Chen and Han Vinck result is strict for some SD-WTCs. Specializing the lower bound to the case where CSI is also available to the decoder reveals that it is at least as good as the achievable formula by Chia and El-Gamal, which is already known to outperform the adaptation of the Chen and Han Vinck code to the encoder and decoder CSI scenario. The results are derived under the strict semantic security metric that requires negligible information leakage for all message distributions. The proof of achievability relies on a stronger version of the soft-covering lemma for superposition codes. The lower bound is shown to be tight for a class of reversely less-noisy SD-WTCs, thus characterizing the fundamental limit of reliable a secure communication. An explicit coding scheme that includes a key extraction phase via the random state sequence is also proposed.
机译:我们在编码器处使用具有非因果频道状态信息(CSI)的状态依赖(SD)丝网(WTC)的语义安全通信。此模型将CSI可用性的所有其他实例作为特殊情况,并呼叫有效利用状态序列以获得可靠性和安全性。基于新的叠加编码方案,导出了陈和汉·vinck的先前最着名的结果的秘密能力的下限。对某些SD-WTCS的陈和汉VINCK结果的改进是严格的。专门用于CSI对解码器也可用的情况显示它至少与Chia和El-Gamal的可实现的公式一样好,这已被称为优于陈和汉vInck代码的适应编码器和解码器CSI方案。结果是在严格的语义安全指标下导出,需要为所有消息分布泄露可忽略不计的信息泄漏。可实现性证明依赖于叠加代码的更强大版本的软覆盖物流。对于一类反向噪声的SD-WTC来说,下界被视为紧密,从而表征可靠的安全通信的基本限制。还提出了一种通过随机状态序列的密钥提取阶段的显式编码方案。

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