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Security Enhancement Mechanism Based on Contextual Authentication and Role Analysis for 2G-RFID Systems

机译:基于上下文身份验证和角色分析的2G-RFID系统安全增强机制

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摘要

The traditional Radio Frequency Identification (RFID) system, in which the information maintained in tags is passive and static, has no intelligent decision-making ability to suit application and environment dynamics. The Second-Generation RFID (2G-RFID) system, referred as 2G-RFID-sys, is an evolution of the traditional RFID system to ensure better quality of service in future networks. Due to the openness of the active mobile codes in the 2G-RFID system, the realization of conveying intelligence brings a critical issue: how can we make sure the backend system will interpret and execute mobile codes in the right way without misuse so as to avoid malicious attacks? To address this issue, this paper expands the concept of Role-Based Access Control (RBAC) by introducing context-aware computing, and then designs a secure middleware for backend systems, named Two-Level Security Enhancement Mechanism or 2L-SEM, in order to ensure the usability and validity of the mobile code through contextual authentication and role analysis. According to the given contextual restrictions, 2L-SEM can filtrate the illegal and invalid mobile codes contained in tags. Finally, a reference architecture and its typical application are given to illustrate the implementation of 2L-SEM in a 2G-RFID system, along with the simulation results to evaluate how the proposed mechanism can guarantee secure execution of mobile codes for the system.
机译:传统的射频识别(RFID)系统中,标签中保存的信息是被动和静态的,没有智能的决策能力来适应应用程序和环境动态。第二代RFID(2G-RFID)系统称为2G-RFID-sys,是对传统RFID系统的改进,以确保未来网络中更好的服务质量。由于2G-RFID系统中活动移动代码的开放性,实现传送智能带来了一个关键问题:我们如何确保后端系统以正确的方式解释和执行移动代码而不会被滥用,以避免恶意攻击?为了解决此问题,本文通过引入上下文感知计算扩展了基于角色的访问控制(RBAC)的概念,然后为后端系统设计了安全的中间件,称为“二级安全增强机制”或“ 2L-SEM”。通过上下文身份验证和角色分析确保移动代码的可用性和有效性。根据给定的上下文限制,2L-SEM可以过滤标签中包含的非法和无效移动代码。最后,给出了参考架构及其典型应用来说明2G-RFID系统中2L-SEM的实现,以及仿真结果,以评估所提出的机制如何保证系统中移动代码的安全执行。

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