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Identity-based revocation system: Enhanced security model and scalable bounded IBRS construction with short parameters

机译:基于身份的撤销系统:增强的安全模型和具有短参数的可扩展界限IBRS构造

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Identity-based revocation system (IBRS) produces a ciphertext based on the revoked identities such that this ciphertext can only be decrypted by the private keys of non-revoked identities. IBRS can be classified into unbounded IBRS and bounded IBRS, depending on whether to set a maximal revocation number (e.g., N) or not. Compared to unbounded IBRS, existing bounded IBRS schemes have the advantage of short ciphertexts, however, they cannot support an increase of N and have to fix a large N to provide the revocation. This compromises the computational efficiency, which is linear in N. To bridge this gap, we are interested in exploring whether N can be dynamic. Precisely, N is initially set as a small number and increased into a larger one when more than N identities are revoked, while this increase does not affect other non-revoked users in the system. In this paper, motivated by the security of bounded IBRS with a dynamic N, we define an enhanced security model, which allows the corruption of any polynomial number (e.g., n) of private keys, independent of N. It augments existing security models by running different challenges when n = N and n N, respectively. The enhanced security model suits both unbounded 1BRS and bounded IBRS with a general description that can be "empty" for unbounded IBRS or a special N for bounded IBRS. Then, we propose a scalable bounded IBRS scheme and are able to prove its security in an enhanced security model. The increase of N incurs no changing on all of the existing private keys and the only cost is a slight expansion of the master public keys. Our proposed scheme also has short ciphertexts and private keys, comparable to the state-of-the-art (bounded) IBRS schemes. (C) 2018 Elsevier Inc. All rights reserved.
机译:基于身份的撤销系统(IBRS)生成基于撤销的标识的密文,使得该密文只能由非撤销标识的私钥解密。根据是否设置最大撤销号(例如,n),可以将IBR分为无界IBRS和有界IBRS。与无界IBRS相比,现有的有界IBRS方案具有短密文的优点,但是,它们无法支持N增加,并且必须修复大n以提供撤销。这损害了计算效率,即在N中线性。要弥合这种差距,我们有兴趣探索n是否可以是动态的。准确地说,n最初被设置为少量,并且当撤销超过n个身份时增加一个较大的数字,而这种增加不会影响系统中的其他非撤销用户。在本文中,通过带有动态N的有界IBR的安全性的激励,我们定义了增强的安全模型,它允许私钥的任何多项式(例如,n)损坏,而独立于n。它增加了现有的安全模型当n& = n和n&gt时运行不同的挑战;分别。增强的安全模型适用于无界的1BRS和有界IBRS,其中概要描述可以为无限的IBRS或界限IBRS的特殊n为“空”。然后,我们提出了一种可扩展的界限IBRS方案,并且能够在增强的安全模型中证明其安全性。 n的增加不会在所有现有私钥上更改,并且唯一的成本是主公钥的轻微扩展。我们所提出的计划还具有短期内容和私钥,可与最先进的(有界)IBRS计划相当。 (c)2018年Elsevier Inc.保留所有权利。

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