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Efficient Constructions of Signcryption Schemes and Signcryption Composability

机译:有效的签发方案和签出可用性的结构

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In this paper, we investigate simple but efficient constructions of signcryption schemes. Firstly, we show how symmetric primitives can be used to efficiently achieve outsider multi-user security, leading to a signcryption scheme with the currently lowest ciphertext and computational overhead. For the mixed security notions outsider confidentiality/insider unforgeability and insider confidentiality/outsider unforgeability, this approach yields lower ciphertext overhead and a higher level of security, respectively, compared to the current schemes. Secondly, we show a simple optimization to the well known "sign-then-encrypt" and "encrypt-then-sign" approaches to the construction of signcryption schemes by using tag-based encryption. Instantiations with our proposed tag-based schemes yield multi-user insider secure signcryption schemes in the random oracle model which is at least as efficient as any other existing scheme both in terms of ciphertext overhead and computational cost. Furthermore, we show that very efficient standard model signcryption schemes can be constructed using this technique as well. Lastly, we show how signatures and encryption can be combined in a non-black-box manner to achieve higher efficiency than schemes based on the above approach. We refer to signature and encryption schemes which can be combined in this way as signcryption composable, and we show that a number of the most efficient standard model encryption and signature schemes satisfy this, leading to the most efficient standard model signcryption schemes. Since all of our constructions are fairly simple and efficient, they provide a benchmark which can be used to evaluate future signcryption schemes.
机译:在本文中,我们研究签密方案的简单而有效的结构。首先,我们展示如何元对称,能用来有效地实现外人多用户的安全性,导致了签密方案与目前最低的密文和计算开销。对于混合安全概念局外人保密/内幕不可伪造和内部保密/局外人不可伪造性,这种方法的产率降低密文开销和安全性,分别的一个更高的水平,相对于当前方案。其次,我们展示了一个简单的优化,以著名的“登录当时加密”和“加密,然后符号”接近签密方案通过使用基于标签的加密建设。我们提出了基于标签的方案实例产生多用户内幕安全签密方案在随机预言模型,至少是同样有效无论是在密文的开销和计算成本方面现有的任何其他方案。此外,我们发现非常有效的标准模型签密方案可以使用这种技术,以及构建。最后,我们展示了如何签名和加密可以在非黑匣子的方式进行组合,以实现比基于上述办法的方案更高的效率。我们指的是能够以这种方式作为组合的签密结合签名和加密方案,我们表明,一些最有效的标准模型的加密和签名方案的满足这一点,导致了最有效的标准模型签密方案。因为我们所有的结构都相当简单,高效,他们提供可用于评估未来的签密方案的基准。

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