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Secure identity-based multisignature schemes under quadratic residue assumptions

机译:二次残差假设下基于安全身份的多重签名方案

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Digital signatures are one of the fundamental security primitives because they provide authenticity and nonrepudiation in the broadcast/multicast communication networks. However, the current broadcast/multicast authentication standards are vulnerable to signature flooding because excessive signature verification requests exhaust the computational resource of victims. The situation becomes worse in the case of the energy-constrained networks such as wireless sensor networks and mobile ad hoc networks. As an essential variation of ordinary digital signature schemes, multisignature schemes enable a single compact signature to authenticate a message under a set of different signers. In this paper, we first propose an efficient identity-based multisignature scheme with three interactive rounds under quadratic residue assumption, which equals to the large integer factoring assumption. By using the technique of quadratic residue-based multiplicatively homomorphic equivocable commitment, an advanced identity-based multisignature scheme is proposed to achieve to reduce the interactive round complexity to two rounds. We give the formal security proof that our schemes are existentially unforgeable under adaptively chosen message attacks and chosen identity attacks in the random oracle model. Compared with the previous work, our schemes are very efficient. In particular, our schemes are featured by the weak assumption and the efficient signing and verification procedures. Copyright © 2012 John Wiley & Sons, Ltd.
机译:数字签名是基本的安全原语之一,因为它们在广播/多播通信网络中提供了真实性和不可否认性。但是,由于过多的签名验证请求耗尽了受害者的计算资源,因此当前的广播/多播身份验证标准容易受到签名泛洪的攻击。在诸如无线传感器网络和移动自组织网络之类的能量受限网络的情况下,情况变得更糟。作为普通数字签名方案的基本变体,多重签名方案使单个紧凑的签名能够在一组不同的签名者下对消息进行身份验证。在本文中,我们首先提出一个有效的基于身份的多重签名方案,该方案在二次残差假设下等于三个大整数圈,等于大整数分解假设。通过使用基于二次残基的可乘同构可模糊承诺技术,提出了一种基于身份的高级多重签名方案,以实现将交互回合复杂度降低到两回合的目的。我们提供了正式的安全性证明,即在随机预言机模型中,在自适应选择的消息攻击和选择的身份攻击下,我们的方案在本质上是不可伪造的。与以前的工作相比,我们的方案非常有效。特别是,我们的方案的特点是假设假设薄弱且签名和验证程序高效。版权所有©2012 John Wiley&Sons,Ltd.

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