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Efficient public key encryption with smallest ciphertext expansion from factoring

机译:通过分解使密文扩展最小的高效公共密钥加密

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摘要

For public key encryption schemes, adaptive chosen ciphertext security is a widely accepted security notion since it captures a wide range of attacks. SAEP and SAEP+ are asymmetric encryption schemes which were proven to achieve semantic security against adaptive chosen ciphertext attacks. However, the bandwidth for message is essentially worse, that is the ciphertext expansion (the length difference between the ciphertext and the plaintext) is too large. In most of the mobile networks and bandwidth constrained communication systems, it is necessary to securely send as many messages as possible. In this article, we propose two chosen-ciphertext secure asymmetric encryption schemes. The first scheme is a generic asymmetric encryption padding scheme based on trapdoor permutations. The second one is its application to the Rabin-Williams function which has a very fast encryption algorithm. These asymmetric encryption schemes both achieve the optimal bandwidth w.r.t. the ciphertext expansion, namely with the smallest ciphertext expansion. Further, tight security reductions are shown to prove the security of these encryption schemes.
机译:对于公钥加密方案,自适应选择的密文安全性是一种广泛接受的安全性概念,因为它捕获了广泛的攻击。 SAEP和SAEP +是非对称加密方案,已被证明可针对自适应选择的密文攻击实现语义安全性。但是,消息的带宽本质上更差,即密文扩展(密文和明文之间的长度差)太大。在大多数移动网络和带宽受限的通信系统中,有必要安全地发送尽可能多的消息。在本文中,我们提出了两种选择的密文安全性非对称加密方案。第一种方案是基于活板门置换的通用非对称加密填充方案。第二个是它对Rabin-Williams函数的应用,该函数具有非常快速的加密算法。这些非对称加密方案均实现了最佳带宽w.r.t。密文扩展,即最小的密文扩展。此外,显示出严格的安全性降低可以证明这些加密方案的安全性。

著录项

  • 来源
    《Designs, Codes and Crytography》 |2008年第3期|p.233-249|共17页
  • 作者单位

    Computer Science and Technology Department, East China Normal University, North Zhongshan Road 3663, Shanghai 200062, China;

    National Computer Network Emergency Response Technical Team (Coordination Center of China), Beijing, China;

    Computer Science and Technology Department, East China Normal University, North Zhongshan Road 3663, Shanghai 200062, China Institute of Theoretical Computing, East China Normal University, North Zhongshan Road 3663, Shanghai 200062, China;

    Computer Science and Technology Department, East China Normal University, North Zhongshan Road 3663, Shanghai 200062, China;

    National Computer Network Emergency Response Technical Team (Coordination Center of China), Beijing, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    encryption scheme; tight security; factoring; random oracle model; SAEP; random permutation model;

    机译:加密方案;严格的安全保障;保理随机预言模型SAEP;随机排列模型;

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