Lattice-Based Fine-grained Data Access Control and Sharing Scheme in Fog and Cloud Computing Environments for the 6G Systems

Bei Pei, Xianbin Zhou, R. Jiang
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Abstract

The 6G (the sixth generation mobile communication) network is a heterogeneous network, which includes the cloud computing and the fog computing environment. And, the data securities in the 6G Systems may face great challenges. On the one hand, fine-grained data access control in fog and cloud computing environments is essential to the 6G network. On the other hand, quantum computing attacks may cause great security threats for the 6G network. In order to solve the above problems, we propose a lattice-based fine-grained data access control and sharing scheme in fog and cloud computing environments (LB-DACSS) for the 6G network. Firstly, our LB-DACSS scheme can achieve secure data sharing and fine-grained access control in fog and cloud computing environments. Secondly, we apply a lattice encryption algorithm to ensure our LB-DACSS scheme can withstand quantum computing attacks. Thirdly, our LB-DACSS scheme can achieve secure attribute revocation. Fourthly, we bind a unique secret value related to the user's attribute to construct the user's secret key. Finally, both formal security analysis and performance analysis show that our LB-DACSS scheme is efficient and secure.
雾和云计算环境下基于格点的6G系统细粒度数据访问控制与共享方案
6G(第六代移动通信)网络是一种异构网络,包括云计算和雾计算环境。同时,6G系统的数据安全性也将面临巨大的挑战。一方面,雾和云计算环境下的细粒度数据访问控制对6G网络至关重要。另一方面,量子计算攻击可能会给6G网络带来巨大的安全威胁。为了解决上述问题,我们提出了一种基于格的雾和云计算环境下的细粒度数据访问控制和共享方案(LB-DACSS)。首先,我们的LB-DACSS方案可以在雾和云计算环境下实现安全的数据共享和细粒度的访问控制。其次,我们采用了一种点阵加密算法,以确保我们的LB-DACSS方案能够抵御量子计算攻击。第三,我们的LB-DACSS方案可以实现安全的属性撤销。第四,我们绑定一个与用户属性相关的唯一的秘密值来构造用户的秘密密钥。最后,形式安全性分析和性能分析表明,我们的LB-DACSS方案是高效和安全的。
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