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Semantically-Secured Message-Key Trade-Off over Wiretap Channels with Random Parameters

机译:具有随机参数的窃听通道上的语义安全消息密钥权衡

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We study the trade-off between secret message (SM) and secret key (SK) rates simultaneously achievable over a state-dependent (SD) wiretap channel (WTC) 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. An inner bound on the semantic-security (SS) SM-SK capacity region is derived based on a novel superposition coding scheme. Our inner bound improves upon the previously best known SM-SK trade-off result by Prabhakaran et al., and to the best of our knowledge, upon all other existing lower bounds for either SM or SK for this setup. The results are derived under the strict semantic-security metric that requires negligible information leakage for all message-key distributions. The achievability proof uses the strong soft-covering lemma for superposition codes.
机译:我们研究了在编码器上具有非因果信道状态信息(CSI)的状态相关(SD)窃听信道(WTC)上可同时实现的秘密消息(SM)和秘密密钥(SK)速率之间的权衡。此模型将CSI可用性的所有其他实例都包含为特殊情况,并要求出于可靠性和安全性目的而有效利用状态序列。基于一种新颖的叠加编码方案,推导了语义安全(SS)SM-SK容量区域的内界。我们的内界改善了Prabhakaran等人先前最著名的SM-SK折衷结果,并且据我们所知,针对此设置,SM或SK的所有其他现有下界也有所改善。结果是在严格的语义安全性度量标准下得出的,该度量标准要求所有消息密钥分发的信息泄漏都可以忽略不计。可实现性证明对叠加代码使用强的软覆盖引理。

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