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The Arbitrarily Varying Wiretap Channel—Secret Randomness, Stability, and Super-Activation

机译:任意变化的窃听通道-秘密随机性,稳定性和超级激活

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We define the common randomness-assisted capacity of an arbitrarily varying wiretap channel (AVWC) when the eavesdropper is kept ignorant about the common randomness. We prove a multi-letter capacity formula for this model. We prove that, if enough common randomness is used, the capacity formula can be given a single-shot form again. We then consider the opposite extremal case, where no common randomness is available, and derive the capacity. It is known that the capacity of the system can be discontinuous under these circumstances. We prove here that it is still stable in the sense that it is continuous around its positivity points. We further prove that discontinuities can only arise if the legal link is symmetrizable and characterize the points where it is positive. These results shed new light on the design principles of communication systems with embedded security features. At last, we investigate the effect of super-activation of the message transmission capacity of AVWCs under the average error criterion. We give a complete characterization of those AVWCs that may be super-activated. The effect is thereby also related to the (conjectured) super-activation of the common randomness assisted capacity of AVWCs with an eavesdropper that gets to know the common randomness. Super-activation is based on the idea of wasting a few bits of non-secret messages in order to enable provably secret transmission of a large bulk of data, a concept that may prove to be of further importance in the design of communication systems. In this paper, we provide further insight into this phenomenon by providing a class of codes that is capacity achieving and does not convey any information to the eavesdropper.
机译:当窃听者对公共随机性不了解时,我们定义了任意变化的窃听通道(AVWC)的公共随机性辅助容量。我们证明了该模型的多字母容量公式。我们证明,如果使用足够的公共随机性,则可以再次将容量公式指定为单次形式。然后,我们考虑没有共同随机性可用的相反极端情况,并得出容量。已知在这些情况下系统的容量可能是不连续的。我们在这里证明它在它的积极点附近是连续的,它仍然是稳定的。我们进一步证明,不合法性只有在法律联系是可对称的并且表征其为正的点时才会出现。这些结果为具有嵌入式安全功能的通信系统的设计原理提供了新的思路。最后,我们研究了平均误差准则下超激活AVWC消息传输能力的影响。我们给出了可能被超级激活的AVWC的完整特征。因此,该效果还与具有了解共同随机性的窃听者对AVWC的共同随机性辅助能力的(推测)超激活有关。超级激活基于浪费几比特的非保密消息的想法,以便实现可证明的秘密传输大量数据,这一概念在通信系统的设计中可能会变得更加重要。在本文中,我们通过提供可以实现容量并且不向窃听者传递任何信息的一类代码来提供对这种现象的进一步了解。

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