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Revocable and strongly unforgeable identity-based signature scheme in the standard model

机译:标准模型中基于可撤销且不可伪造的基于身份的签名方案

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摘要

Revocation functionality is crucial for the practicality of the public key cryptosystems, especially for that of identity-based cryptosystems. When some users lose their private keys, the cryptosystems must support an efficient revocation method to revoke such users. On the other hand, strong unforgeability provides stronger security than existential unforgeability and ensures the adversary cannot even produce a new signature for a previously signed message. However, existing revocable identity-based signature schemes can support neither efficient key revocation nor strong unforgeability. In this paper, we propose a strongly unforgeable identity-based signature scheme with efficient revocation. In the proposed scheme, the master key is randomly divided into two parts: one is used to construct the initial secret key, the other is used to generate the key update. Furthermore, they are used to periodically and re-randomly produce signing keys for non-revoked users. Thus, the proposed scheme can efficiently revoke users and resist key exposure attacks. In the standard model, our scheme is proven to be strongly unforgeable under the CDH hardness assumption. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:撤销功能对于公共密钥密码系统的实用性至关重要,尤其是对于基于身份的密码系统。当某些用户丢失其私钥时,密码系统必须支持一种有效的吊销方法来吊销此类用户。另一方面,强大的不可伪造性比现有的不可伪造性提供了更强的安全性,并确保对手甚至无法为先前签名的消息产生新的签名。但是,现有的可撤销的基于身份的签名方案既不能支持有效的密钥撤销,也不能支持强大的不可伪造性。在本文中,我们提出了一种具有高效撤销功能的,不可伪造的基于身份的签名方案。在提出的方案中,主密钥被随机分为两部分:一个用于构造初始密钥,另一个用于生成密钥更新。此外,它们还用于定期为非撤销用户重新随机生成签名密钥。因此,提出的方案可以有效地撤消用户并抵抗密钥暴露攻击。在标准模型中,我们的方案在CDH硬度假设下被证明是不可伪造的。版权所有(c)2016 John Wiley&Sons,Ltd.

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