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A new VRSA-based pairing-free certificateless signature scheme for fog computing

机译:一种新的基于VRSA的免配对无证书签名方案,用于雾计算

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Fog computing is composed of various computers with weak performance instead of servers with strong performance. As history has shown, there has not been a general pairing-free certificateless signature scheme that is mainly designed with modular exponentiation and modular multiplication that can possess resistance to Type I and Type II adversaries. The lightweight certificateless signature algorithm with low requirements for computing and storage capabilities, which can be practicably implemented in fog computing, needs to be studied. Therefore, a new hard mathematic problem is firstly defined in this paper, which is called variant of RSA problem. Then, a new general pairing-free certificateless signature scheme is proposed based on the variant of RSA problem and the discrete logarithm problem. Fortunately, the proposed scheme is the first RSA-based certificateless signature scheme that can possess resistance to Type I and Type II adversaries. A formal security proof is provided to demonstrate that, under adaptively chosen message attacks, the scheme is provably secure against Type I and Type II adversaries in the random oracle model. When compared with other known pairing-free certificateless signature schemes of the sametype, the computation cost of our scheme is slightly higher;however, a higher security level can be achieved.
机译:雾计算由性能较弱的各种计算机而不是性能较高的服务器组成。如历史所示,目前还没有一种通用的免配对的无证书签名方案,该方案主要设计为具有模I型和II型对手的模幂和模乘法。需要研究对计算和存储功能有较低要求的轻量级无证书签名算法,该算法可以在雾计算中实际实现。因此,本文首先定义了一个新的硬数学问题,称为RSA问题的变体。然后,根据RSA问题的变体和离散对数问题,提出了一种新的通用的免配对无证书签名方案。幸运的是,提出的方案是第一个基于RSA的无证书签名方案,可以抵抗I型和II型对手。提供了一个正式的安全证明,以证明在自适应选择的消息攻击下,该方案针对随机预言模型中的I型和II型对手具有可证明的安全性。与其他已知的相同类型的免配对无证书签名方案相比,我们的方案的计算成本略高;但是,可以实现更高的安全级别。

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