More Efficient Adaptively Secure Lattice-based IBE with Equality Test in the Standard Model

IF 0.4 4区 计算机科学 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Kyoichi ASANO, Keita EMURA, Atsushi TAKAYASU
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Abstract

Identity-based encryption with equality test (IBEET) is a variant of identity-based encryption (IBE), in which any user with trapdoors can check whether two ciphertexts are encryption of the same plaintext. Although several lattice-based IBEET schemes have been proposed, they have drawbacks in either security or efficiency. Specifically, most IBEET schemes only satisfy selective security, while public keys of adaptively secure schemes in the standard model consist of matrices whose numbers are linear in the security parameter. In other words, known lattice-based IBEET schemes perform poorly compared to the state-of-the-art lattice-based IBE schemes (without equality test). In this paper, we propose a semi-generic construction of CCA-secure lattice-based IBEET from a certain class of lattice-based IBE schemes. As a result, we obtain the first lattice-based IBEET schemes with adaptive security and CCA security in the standard model without sacrificing efficiency. This is because, our semi-generic construction can use several state-of-the-art lattice-based IBE schemes as underlying schemes, e.g. Yamada's IBE scheme (CRYPTO'17).
标准模型中具有等式检验的更有效的自适应安全栅格IBE
IBEET (Identity-based encryption with equality test)是IBE (Identity-based encryption)的一种变体,任何拥有活板门的用户都可以检查两个密文是否为同一明文的加密。尽管已经提出了几种基于格子的IBEET方案,但它们在安全性和效率方面都存在缺陷。具体而言,大多数IBEET方案仅满足选择性安全性,而标准模型中自适应安全方案的公钥由矩阵组成,其个数与安全参数呈线性关系。换句话说,与最先进的基于格子的IBEET方案相比,已知的基于格子的IBEET方案的性能较差(没有相等性测试)。本文从一类基于格的IBEET方案出发,提出了一种cca安全的基于格的IBEET的半泛型构造。在不牺牲效率的情况下,我们获得了标准模型中第一个具有自适应安全性和CCA安全性的基于格的IBEET方案。这是因为,我们的半泛型结构可以使用几种最先进的基于格子的IBE方案作为底层方案,例如Yamada的IBE方案(CRYPTO'17)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.10
自引率
20.00%
发文量
137
审稿时长
3.9 months
期刊介绍: Includes reports on research, developments, and examinations performed by the Society''s members for the specific fields shown in the category list such as detailed below, the contents of which may advance the development of science and industry: (1) Reports on new theories, experiments with new contents, or extensions of and supplements to conventional theories and experiments. (2) Reports on development of measurement technology and various applied technologies. (3) Reports on the planning, design, manufacture, testing, or operation of facilities, machinery, parts, materials, etc. (4) Presentation of new methods, suggestion of new angles, ideas, systematization, software, or any new facts regarding the above.
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