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A short certificateless aggregate signature against coalition attacks

机译:简短的无证书聚合签名可抵抗联盟攻击

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摘要

Certificateless aggregate signature (CLAS) is a crucial cryptosystem. It can not only compress multiple signatures into a short signature, but also ensure the validity of each signature participating in the aggregation by verifying the validity of an resulting aggregate signature. Therefore, a secure and efficient CLAS scheme is very useful for resource-constrained environments because it greatly reduces the overall length of the signature and the verifier’s computational overhead. Cheng et al. presented an efficient CLAS scheme and proved its security in the random oracle model. However, we find that their scheme has security flaws. In this paper, we demonstrate that Cheng et al.’s CLAS scheme is vulnerable to coalition attacks from internal signers. To overcome these attacks, we present an improved CLAS scheme and prove that it is existentially unforgeable under the computational Diffie-Hellman assumption. In addition, our CLAS scheme can not only resist coalition attacks but also generate a very short aggregate signature. The performance analysis results show that our improved CLAS scheme is lower than the related CLAS schemes in terms of communication overhead and computation cost.
机译:无证书聚合签名(CLAS)是至关重要的密码系统。它不仅可以将多个签名压缩为短签名,而且还可以通过验证生成的聚合签名的有效性来确保参与聚合的每个签名的有效性。因此,一种安全高效的CLAS方案对于资源受限的环境非常有用,因为它大大减少了签名的总长度和验证者的计算开销。程等。提出了一种有效的CLAS方案,并在随机预言模型中证明了其安全性。但是,我们发现他们的方案存在安全漏洞。在本文中,我们证明了Cheng等人的CLAS方案容易受到内部签名者的联合攻击。为了克服这些攻击,我们提出了一种改进的CLAS方案,并证明了在计算Diffie-Hellman假设下它是不可伪造的。此外,我们的CLAS方案不仅可以抵抗联盟攻击,而且可以生成非常短的聚合签名。性能分析结果表明,改进后的CLAS方案在通信开销和计算成本上均低于相关的CLAS方案。

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