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Trust and Risk-Based Access Control Model for Zero-Knowledge Oriented Mobile Peer-to-Peer Environments

机译:面向零知识的移动对等环境的基于信任和风险的访问控制模型

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摘要

In this paper, we propose a Trust and Risk-based Access Control Model (TRACM) for achieving trustworthy resource sharing over mobile P2P networks. With TRACM, many malicious peers are automatically separated from the trusted mobile P2P resource sharing network which consists of benign peers. The main contribution of this model is that the request peers give first priority to connecting the secure resource peers and the resource peers also give first priority to authorizing the trusted request peers. A major difference between TRACM and many existing access control models for P2P networks is that TRACM uses Bayesian Game theory to design an available and survivable access control model for zero-trust knowledge mobile P2P scenarios, and therefore is able to adapt to dynamic mobile P2P environments. Our work appears to be the first attempt to research the access control model under the zero-trust knowledge mobile environment. The simulation results show that our model can greatly improve the download success rate. Furthermore, the experimental results demonstrate that TRACM has lower control overhead than other access control models.
机译:在本文中,我们提出了一种基于信任和基于风险的访问控制模型(TRACM),用于在移动P2P网络上实现可信赖的资源共享。使用TRACM,许多恶意对等体会自动与由良性对等体组成的受信任移动P2P资源共享网络分离。该模型的主要贡献在于,请求对等方将连接安全资源对等方放在第一位,资源对等方也对授权受信任的请求对等方放在第一位。 TRACM与许多现有的P2P网络访问控制模型之间的主要区别在于,TRACM使用贝叶斯博弈论为零信任知识移动P2P方案设计了一个可用且可生存的访问控制模型,因此能够适应动态移动P2P环境。我们的工作似乎是研究零信任知识移动环境下访问控制模型的首次尝试。仿真结果表明,该模型可以大大提高下载成功率。此外,实验结果表明,TRACM具有比其他访问控制模型更低的控制开销。

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