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Practical Secret-Key Generation by Full-Duplex Nodes with Residual Self-Interference

机译:具有残余自我干扰的全双工节点的实用密钥生成

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In the upcoming Internet of Things (IoT), encryption of confidential data by secret keys is vital. Secret-key generation from reciprocal wireless channels has received much attention in the research community in recent time. However, most implementations were restricted to half-duplex channel probing only. Communication setups with full-duplex (FD) capability enable new prospects for secret-key generation, since the inherent superposition of FD signals renders the acquisition of secret information more difficult for an eavesdropper. In this work, we demonstrate a practical testbed with FD capability in order to evaluate its advantages for secret-key agreement. We quantify the performance by computing correlation coefficients and mutual information of all channel estimates. Our work provides new insights into the opportunity of downgrading the capabilities of eavesdroppers by using full-duplex nodes.
机译:在即将到来的物联网(IoT)中,通过密钥对机密数据进行加密至关重要。最近,在互惠的无线通道中生成密钥已经引起了研究界的广泛关注。但是,大多数实现仅限于半双工信道探测。具有全双工(FD)功能的通信设置为生成密钥提供了新的前景,因为FD信号的固有叠加使窃听者更难以获取秘密信息。在这项工作中,我们演示了具有FD功能的实用测试平台,以便评估其在密钥协商方面的优势。我们通过计算所有通道估计的相关系数和互信息来量化性能。我们的工作为使用全双工节点降级窃听者功能的机会提供了新的见解。

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