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Arbitrarily varying wiretap channels with finite coordination resources

机译:具有有限协调资源的任意变化的窃听通道

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The wiretap channel models secure communication in the presence of a non-legitimate eavesdropper who has to be kept ignorant. In this paper, the arbitrarily varying wiretap channel (AVWC) is studied, in which the channel to both legitimate receiver and eavesdropper may vary in an unknown and arbitrary manner from channel use to channel use. It has been shown that for AVCs coordination between the transmitter and legitimate receiver based on common randomness (CR) is indispensable for reliable communication. Approaches taken so far yield CR-assisted strategies where the needed amount of CR increases unbounded with the block length. In this paper, it is shown that if we allow for a small but non-vanishing average probability of error and information leakage (in terms of weak secrecy), the amount of CR is always finite and independent of the block length. The corresponding secrecy capacity equals the one with asymptotically vanishing performance requirements. Furthermore, it is shown that the average decoding error at the eavesdropper can be made arbitrarily close to 1 regardless of the applied decoding strategy.
机译:窃听通道模型在必须保持无知的非合法窃听者的情况下保证了通信的安全。本文研究了任意变化的窃听通道(AVWC),其中到合法接收者和窃听者的通道可能会以未知和任意的方式从通道使用到通道使用发生变化。已经表明,对于AVC,基于公共随机性(CR)的发射机和合法接收机之间的协调对于可靠的通信是必不可少的。迄今为止采取的方法产生了CR辅助策略,其中所需的CR数量随块长度的增加而无限制地增加。在本文中,表明如果我们允许一个小的但不消失的错误和信息泄漏的平均概率(就保密性而言),则CR的数量始终是有限的,并且与块长度无关。相应的保密容量等于渐近消失的性能要求。此外,示出了,不管所采用的解码策略如何,可以使窃听者处的平均解码误差任意地接近于1。

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