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On the using of discrete wavelet transform for physical layer key generation

机译:关于离散小波变换在物理层密钥生成中的应用

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For key generation between wireless transceivers, key generation leveraging channel reciprocity is a promising alternative to public key cryptography. Several existing schemes have validated its feasibility in real environments. However, in some scenarios, channel measurements collected by the involved transceivers are highly correlated but not identical, i.e., measurement sequences of these transceivers have too many discrepancies, which makes it difficult to extract the shared key from these measurements. In this paper, we propose a scheme to achieve secret key generation from wireless channels. During the proposed scheme, to reduce the amount of the referred discrepancies and further achieve efficient key generation, the involved transceivers separately apply a compressor based on the discrete wavelet transform (DWT) to pre-process their measurements. Then, multi-level quantization is implemented to quantify the output of DWT-based compressor. An encoding scheme based on gray code is employed to establish bit sequence and ensure that the resulting bit mismatch rate can be further reduced so that efficient information reconciliation can be implemented. Accordingly, the shared key between these transceivers can be derived after information reconciliation. Finally, 2-universal hash functions are used to guarantee the randomness of the shared secret key. Several experiments in real environments are conducted to validate the proposed scheme. The results demonstrate that the proposed scheme is available to generate shared secret keys between transceivers even though their measurement sequences have too many discrepancies. (C) 2017 Elsevier B.V. All rights reserved.
机译:对于无线收发器之间的密钥生成,利用通道互易性的密钥生成是公钥加密的有希望的替代方法。现有的几种方案已经验证了其在实际环境中的可行性。但是,在某些情况下,所涉及的收发器收集的信道测量值是高度相关的,但并不完全相同,即,这些收发器的测量序列有太多差异,这使得很难从这些测量值中提取共享密钥。在本文中,我们提出了一种从无线信道实现秘密密钥生成的方案。在提出的方案中,为了减少参考差异的数量并进一步实现有效的密钥生成,所涉及的收发器分别基于离散小波变换(DWT)应用压缩器对它们的测量值进行预处理。然后,执行多级量化以量化基于DWT的压缩器的输出。采用基于格雷码的编码方案来建立比特序列,并确保可以进一步降低最终的比特失配率,从而可以实现有效的信息协调。因此,可以在信息协调之后得出这些收发器之间的共享密钥。最后,使用2-通用哈希函数来保证共享密钥的随机性。在真实环境中进行了几次实验,以验证所提出的方案。结果表明,所提出的方案可用于在收发器之间生成共享密钥,即使它们的测量序列有太多差异。 (C)2017 Elsevier B.V.保留所有权利。

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