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A mobile role-based access control system using identity-based encryption with zero knowledge proof

机译:基于移动角色的访问控制系统,使用基于身份的加密和零知识证明

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摘要

Controlled access to confidential information and resources is a critical element in security systems. Role-based access control (RBAC) has gained widespread usage in modern enterprise systems. Extensions have been proposed to RBAC for incorporating spatial constraints into such systems. Several solutions have been proposed for such models and many researchers are now focusing on enforcing system policies. In this paper we propose a security framework for RBAC systems with spatial constraints based on identity-based encryption. In our framework, we use identity-based encryption with zero knowledge proof (ZKP) to provide authentication and information security. We also show how Near Field Communication (NFC) can be used to establish the integrity of a user's proof of location. Simulation results in Java validate our model. Furthermore, security analysis has been done to show how our framework protects against well-known attacks.
机译:对机密信息和资源的受控访问是安全系统中的关键要素。基于角色的访问控制(RBAC)在现代企业系统中得到了广泛的使用。已经提出了对RBAC的扩展,以将空间约束纳入这种系统。已经针对这种模型提出了几种解决方案,并且许多研究者现在集中于执行系统策略。在本文中,我们基于基于身份的加密,为具有空间约束的RBAC系统提出了一个安全框架。在我们的框架中,我们使用具有零知识证明(ZKP)的基于身份的加密来提供身份验证和信息安全性。我们还将展示如何使用近场通信(NFC)建立用户位置证明的完整性。 Java中的仿真结果验证了我们的模型。此外,已经进行了安全性分析,以显示我们的框架如何防范众所周知的攻击。

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