CCA-secure revocable identity-based encryption schemes with decryption key exposure resistance

Yuu Ishida, Junji Shikata, Yohei Watanabe
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引用次数: 16

Abstract

Key revocation functionality is important for identity-based encryption (IBE) to manage users dynamically. Revocable IBE (RIBE) realises such revocation functionality with scalability. In PKC 2013, Seo and Emura first considered decryption key exposure resistance (DKER) as a new realistic threat, and proposed the first RIBE scheme with DKER. Their RIBE scheme is adaptively secure against chosen plaintext attacks (CPA), and there is no concrete RIBE scheme adaptively secure against chosen ciphertext attacks (CCA) even without DKER so far. In this paper, we first propose three constructions of adaptively CCA-secure RIBE schemes with DKER. The first and second schemes are based on an existing transformation, which is called a BCHK transformation, that a CPA-secure hierarchical IBE scheme can be transformed into a CCA-secure scheme. The third scheme is constructed via the KEM/DEM framework. Specifically, we newly propose a revocable identity-based key encapsulation mechanism (RIB-KEM), and we show a generic construction of a CCA-secure RIBE scheme from the RIB-KEM and a data encapsulation mechanism (DEM). The third scheme is more efficient than the first and second ones in terms of the ciphertext size.
具有抗解密密钥暴露的cca安全可撤销的基于身份的加密方案
密钥撤销功能对于基于身份的加密(IBE)动态管理用户非常重要。可撤销IBE (RIBE)通过可伸缩性实现了这种撤销功能。在PKC 2013中,Seo和Emura首次将解密密钥暴露阻力(DKER)视为一种新的现实威胁,并提出了第一个带有DKER的RIBE方案。他们的RIBE方案对选择明文攻击(CPA)具有自适应安全性,即使没有DKER,到目前为止也没有具体的RIBE方案对选择密文攻击(CCA)具有自适应安全性。本文首先提出了三种基于DKER的自适应cca安全RIBE方案。第一种和第二种方案是基于现有的一种转换,即BCHK转换,即cpa安全的分层IBE方案可以转换为ca安全的方案。第三种方案是通过KEM/DEM框架构建的。具体来说,我们提出了一种可撤销的基于身份的密钥封装机制(RIB-KEM),并展示了一个基于RIB-KEM和数据封装机制(DEM)的cca安全RIBE方案的通用结构。就密文大小而言,第三种方案比第一种和第二种方案更有效。
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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