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Optimizing Online Permutation-Based AE Schemes for Lightweight Applications

机译:针对轻量级应用优化基于在线排列的AE方案

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We explore ways to optimize online, permutation-based au-thenticated-encryption (AE) schemes for lightweight applications. The lightweight applications demand that AE schemes operate in resource-constrained environments, which raise two issues: (1) implementation costs must be low, and (2) ensuring proper use of a nonce is difficult due to its small size and lack of randomness. Regarding the implementation costs, recently it has been recognized that permutation-based (rather than block-cipher-based) schemes frequently show advantages. However, regarding the security under nonce misuse, the standard permutation-based duplex construction cannot ensure confidentiality. There exists one permutation-based scheme named APE which offers certain robustness against nonce misuse. Unfortunately, the APE construction has several drawbacks such as ciphertext expansion and bidirectional permutation circuits. The ciphertext expansion would require more bandwidth, and the bidirectional circuits would require a larger hardware footprint. In this paper, we propose new constructions of online permutation-based AE that require less bandwidth, a smaller hardware footprint and lower computational costs. We provide security proofs for the new constructions, demonstrating that they are as secure as the APE construction.
机译:我们探索了针对轻量级应用优化在线,基于置换的自动加密(AE)方案的方法。轻量级应用程序要求AE方案在资源受限的环境中运行,这引发了两个问题:(1)实现成本必须低,并且(2)由于随机数小且缺乏随机性,难以确保正确使用随机数。关于实现成本,最近已经认识到,基于置换的方案(而不是基于分组密码的方案)经常显示出优势。但是,关于随机数滥用下的安全性,基于置换的标准双工构造无法确保机密性。存在一种称为APE的基于置换的方案,该方案可提供一定的鲁棒性以防止随机数滥用。不幸的是,APE结构有几个缺点,例如密文扩展和双向置换电路。密文扩展将需要更多的带宽,而双向电路将需要更大的硬件占用空间。在本文中,我们提出了基于在线置换的AE的新结构,该结构需要更少的带宽,更小的硬件占用空间和更低的计算成本。我们为新建筑提供安全证明,证明它们与APE建筑一样安全。

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