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Secure and efficient certificateless aggregate signature scheme from bilinear pairings

机译:双线性配对的安全有效的无证书聚合签名方案

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摘要

The most important contribution of modern cryptography is the invention of digital signatures. To deal with specific application scenarios, digital signature schemes have been evolved with different variants. One of such variants is the aggregate signature scheme, which allows aggregation of different signatures by different users on different messages, to achieve computational and communication efficiency. Such schemes are useful in the design of Wireless Sensor Networks, Mobile Ad-hoc Networks, and Vehicular Ad-hoc Networks, where storage, bandwidth, and computational complexity are major constraints. In order to improve the computational and communicational efficiency along with security, in this paper, we propose a novel Certificateless Aggregate Signature (CLAS) scheme and extended it to achieve full aggregation. The proposed CLAS scheme uses bilinear pairings over elliptic curves and is proven secure in the Random Oracle Model under the assumption that Computational Diffie-Hellman Problem is hard. The security of the proposed CLAS scheme is proven without using forking lemma to achieve tight security. We compared our scheme with well-known existing schemes. Efficiency analysis shows that our scheme is much efficient than existing schemes in terms of communication and computational costs.
机译:现代密码学最重要的贡献是数字签名的发明。为了处理特定的应用场景,已经开发了具有不同变体的数字签名方案。这种变体之一是聚合签名方案,该方案允许不同用户在不同消息上聚合不同签名,以实现计算和通信效率。这种方案在无线传感器网络,移动自组织网络和车载自组织网络的设计中很有用,其中存储,带宽和计算复杂性是主要限制。为了提高计算和通信效率以及安全性,本文提出了一种新颖的无证书聚合签名(CLAS)方案,并将其扩展为实现完全聚合。所提出的CLAS方案在椭圆曲线上使用双线性对,并且在计算Diffie-Hellman问题很难的假设下在随机Oracle模型中被证明是安全的。在不使用分叉引理来实现严格安全性的情况下,证明了所提出的CLAS方案的安全性。我们将我们的方案与已知的现有方案进行了比较。效率分析表明,在通信和计算成本方面,我们的方案比现有方案高效得多。

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