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CSI-Based Versus RSS-Based Secret-Key Generation Under Correlated Eavesdropping

机译:基于CSI的与相关窃听下的基于RSS的秘密关键一代

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摘要

Physical-layer security (PLS) has the potential to strongly enhance the overall system security as an alternative to or in combination with conventional cryptographic primitives usually implemented at higher network layers. Secret-key generation relying on wireless channel reciprocity is an interesting solution as it can be efficiently implemented at the physical layer of emerging wireless communication networks, while providing information-theoretic security guarantees. In this article, we investigate and compare the secret-key capacity based on the sampling of the entire complex channel state information (CSI) or only its envelope, the received signal strength (RSS). Moreover, as opposed to previous works, we take into account the fact that the eavesdropper's observations might be correlated and we consider the high signal-to-noise ratio (SNR) regime where we can find simple analytical expressions for the secret-key capacity. As already found in previous works, we find that RSS-based secret-key generation is heavily penalized as compared to CSI-based systems. At high SNR, we are able to precisely and simply quantify this penalty: a halved pre-log factor and a constant penalty of about 0.69 bit, which disappears as Eve's channel gets highly correlated.
机译:物理层安全性(PLS)具有强烈地提高整体系统安全性,作为通常在较高网络层的传统加密基元组合的替代方案。依赖于无线信道互惠的秘密密钥生成是一种有趣的解决方案,因为它可以在新兴的无线通信网络的物理层上有效地实现,同时提供信息理论的安全保证。在本文中,我们根据整个复杂信道状态信息(CSI)的采样或仅其信封,接收信号强度(RSS)进行调查和比较秘密关键容量。此外,与以前的作品相反,我们考虑到窃听者的观察可能相关的事实,我们认为我们可以在秘密关键容量中找到简单的分析表达式的高信噪比(SNR)制度。正如以前的作品所发现的那样,我们发现与基于CSI的系统相比,基于RSS的秘密密钥生成严重惩罚。在高SNR时,我们能够精确地且简单地量化这一惩罚:一半的预测因子和约0.69位的持续惩罚,这消失,因为夏娃的频道得到高度相关性。

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