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Secret Key Establishment Using Temporally and Spatially Correlated Wireless Channel Coefficients

机译:使用临时和空间相关的无线信道系数建立秘密密钥

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When implementing data encryption and decryption in a symmetric cryptosystem, secure distribution of the secret key to legitimate nodes can be a challenge. In this paper, we consider establishing secret keys using the common wireless channel, with particular emphasis on the spatial and temporal correlations of the channel coefficients. Specifically, we investigate the influence of channel correlation on the bound of the key size generated from the common channel using a simple single-input single-output channel model, and we verify the existence of a sampling approach able to generate a key using the minimum possible sampling window. We also explore decorrelation of the channel coefficients in a multiple-input multiple-output channel, and we use a statistical independence test to demonstrate that this process cannot be separated into spatial and temporal decorrelation processes. The insights gained from these studies assist in the development of a practical key generation protocol based on a published channel coefficient quantization method and incorporating flexible quantization levels, transmission of the correlation eigenvector matrix, and LDPC coding to improve key agreement in an authenticated public channel. Finally, we present simulations with real channel measurements that solidify the fundamental conclusions.
机译:在对称密码系统中实现数据加密和解密时,将密钥安全分发到合法节点可能是一个挑战。在本文中,我们考虑使用公共无线信道建立秘密密钥,特别强调信道系数的空间和时间相关性。具体来说,我们使用简单的单输入单输出通道模型研究通道相关性对从公共通道生成的密钥大小范围的影响,并验证了存在能够使用最小值生成密钥的采样方法的存在可能的采样窗口。我们还探索了多输入多输出通道中通道系数的去相关,并且我们使用统计独立性测试来证明此过程无法分为空间和时间去相关过程。从这些研究中获得的见解有助于基于公开的信道系数量化方法并结合灵活的量化级别,相关特征向量矩阵的传输和LDPC编码来改进实际密钥生成协议的开发,以改善经过认证的公共信道中的密钥一致性。最后,我们提出了具有真实信道测量结果的模拟,这些模拟结果巩固了基本结论。

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