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Efficient and Provably Secure Certificateless Parallel Key-Insulated Signature Without Pairing for IIoT Environments

机译:高效且可证明安全的无证书并行密钥绝缘签名,而不配对IIT环境

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摘要

With the continuous development of the industrial Internet of Things (IIoT), many organizations opt for storing the data collected by smart devices on a cloud server for saving costs. Considering the untrusted nature of the communication channel, how to ensure the authenticity of data is an urgent matter to be solved. Certificateless signatures that can provide an authentication mechanism for the data seem to be a viable option to this problem. Nevertheless, the certificateless signature scheme proposed so far is either easy to be broken or inefficient. In this paper, a pairing-free and provably secure certificateless parallel key-insulated signature (CL-PKIS) scheme is put forward for securing the communication in the IIoT environment. Unlike previous work in this field, our scheme not only uses elliptic curves to maintain higher efficiency, but also implants key-insulated primitive to reduce the risk of key exposures. Besides, our scheme provides a parallel mechanism to make it more suitable for the IIoT environment, which was not available in previous solutions. Finally, the security of our CL-PKIS scheme is proved under the discrete logarithm assumption in the random oracle model.
机译:随着工业互联网(IIOT)的不断发展,许多组织选择在云服务器上存储由智能设备收集的数据以节省成本。考虑到通信渠道的不受信任的性质,如何确保数据的真实性是要解决的迫切问题。可以为数据提供身份验证机制的无证书签名似乎是此问题的可行选项。尽管如此,到目前为止提出的无证书签名方案是容易被破坏或效率低下。在本文中,提出了一种无配对和可提供的无证明并联密钥绝缘签名(CL-PKIS)方案,以确保IIT环境中的通信。与以往的工作不同,我们的方案不仅使用椭圆曲线以保持更高的效率,而且还植入密钥绝缘原语以降低关键曝光的风险。此外,我们的计划提供了一种平行的机制,使其更适合IIT环境,这在以前的解决方案中不可用。最后,在随机Oracle模型中的离散对数假设下证明了我们的CL-PKIS方案的安全性。

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