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Post-Processing Protocol for Physical-Layer Key Generation and Distribution in Fiber Networks

机译:光纤网络中物理层密钥生成和分布的后处理协议

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摘要

The unique and random physical-layer properties of optical fiber channels have been exploited for a simple and cost-effective secure key generation and distribution (SKGD). However, state-of-the-art SKGD approaches focused mainly on initial key extraction, while the post-processing protocol has to be explored to guarantee error-free operation, effective key generation rate (KGR) and high key secrecy. Here we propose a full post-processing protocol for SKGD in fiber networks. A lossy quantizer is optimized to achieve the trade-off between the KGR and key disagreement rate. The distributed source coding based information reconciliation is used to remove quantization errors. The privacy amplification is applied to improve the randomness and secrecy of the generated key using hashing functions. The post-processing protocol provides a SKGD solution of error-free, high randomness and high secrecy in fiber networks.
机译:光纤通道的独特和随机物理层属性已被利用,以实现简单且经济高效的安全密钥生成和分布(SKGD)。然而,最先进的SKGD方法主要集中在初始密钥提取上,而必须探索后处理协议保证无差错操作,有效的关键生成率(KGR)和高密钥保密。在这里,我们为光纤网络中的SKGD提出了一个完整的后处理协议。有损量化器经过优化,以实现KGR与关键分歧率之间的权衡。基于分布式的基于源编码的信息协调用于去除量化错误。应用隐私放大器来提高使用散列函数的生成密钥的随机性和保密。后处理协议提供了光纤网络中无差错,高随机性和高保密的SKGD解决方案。

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