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An Adaptive Quantization Algorithm for Secret Key Generation using Radio Channel Measurements

机译:无线信道测量的秘密密钥生成自适应量化算法

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New approaches that generate secret keys from radio channel characteristics have been recently proposed. The security of these schemes usually relies on the reciprocity principle which states that the channel fluctuations can be a source of common randomness for two communicating peers and these fluctuations can't be measured by any eavesdropper. A validation of these properties for indoor environments is presented in this work. The shared keys are created by measuring the reciprocal channel features and converting this information to binary vectors using a quantization algorithm. This paper addresses the problem of quantization. It identifies an important weakness of existing key generation algorithms and it shows that the secret bits extraction has a significant impact on the robustness and security of these algorithms. A new adaptive quantization algorithm for secret key generation is presented. This method has the advantages to create sufficient long secret keys with a high key agreement ratio between authorized users without revealing information to the attacker. The new scheme is experimentally validated using Ultra Wide Band technology.
机译:最近已经提出了从无线电频道特征产生秘密键的新方法。这些方案的安全通常依赖于互惠原理,这些原则,指出频道波动可以是两个通信对等体的常见随机性的来源,并且这些波动不能通过任何窃听者衡量。在这项工作中介绍了对室内环境的这些属性的验证。通过使用量化算法测量倒数通道特征并将该信息转换为二进制向量来创建共享密钥。本文解决了量化问题。它识别现有关键生成算法的重要弱点,并且它表明秘密比特提取对这些算法的鲁棒性和安全性产生了重大影响。呈现了一种新的自适应量化算法,用于秘密密钥生成。该方法具有创建足够的长秘密密钥的优点,授权用户之间具有高密钥协议比率,而不会向攻击者泄露信息。使用超宽带技术进行实验验证新方案。

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