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A Hybrid Access Control Model With Dynamic COI for Secure Localization of Satellite and IoT-Based Vehicles

机译:一种具有动态COI的混合访问控制模型,用于安全定位卫星和物联网车辆

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摘要

Secure localization of vehicles is gaining the attention of researchers from both academia and industry especially due to the emergence of internet of things (IoT). The modern vehicles are usually equipped with circuitries that gives connectivity with other vehicles and with cellular networks such as 4G/Fifth generation cellar network (5G). The challenge of secure localization and positioning is magnified further with the invention of technologies such as autonomous or driverless vehicles based on IoT, satellite, and 5G. Some satellite and IoT based localization techniques exploit machine learning, semantic segmentation, and access control mechanism. Access control provides access grant and secure information sharing mechanism to authorized users and restricts unauthorized users, which is necessary regarding security and privacy of government or military vehicles. Previously, static conflict of interest (COI) based access control was used for security proposes. However, static COI based access control creates excesses and administrative overload that creates latency in execution, which is the least tolerable factor in modern IoT or 5G control vehicles. Therefore, in this paper, a hybrid access control (HAC) model is proposed that implements the dynamic COI in the HAC model on the level of roles. The proposed model is enhanced by modifying the role-based access control (RBAC) model by inserting new attributes of the RBAC entities. The HAC model deals with COI on the level of roles in an efficient manner as compared to previously proposed models. Moreover, this model features significant improvement in terms of dynamic behavior, decreased administrative load, and security especially for vehicular localization. Furthermore, the mathematical modeling of the proposed model is implemented with an example scenario to validate the concept.
机译:安全的本地化是在学术界和行业的研究人员的注意力,特别是由于事物互联网(物联网)。现代车辆通常配备有电路,该电路提供与其他车辆的连接以及诸如4G /第五代地窖网络(5G)的蜂窝网络。安全定位和定位的挑战是通过基于物联网,卫星和5G的自主或无人驾驶车辆等技术的技术来放大。一些卫星和基于物联网的定位技术利用机器学习,语义分割和访问控制机制。访问控制为授权用户提供访问授权和安全信息共享机制,并限制未经授权的用户,这是政府或军用车辆的安全和隐私所必需的。以前,使用基于利益冲突(COI)的访问控制用于安全提案。然而,静态COI基于COI的访问控制创建了过剩和管理过载,从而在执行中创造延迟,这是现代物联网或5G控制车辆中最不受保障的因子。因此,在本文中,提出了一种混合访问控制(HAC)模型,其实现HAC模型中的动态COI在角色级别。通过在通过插入RBAC实体的新属性来修改基于角色的访问控制(RBAC)模型来增强所提出的模型。与先前提出的模型相比,HAC模型以有效的方式处理COI的角色水平。此外,该模型在动态行为,减少的行政负荷和安全性方面具有显着的改进,尤其是用于车辆本地化。此外,所提出的模型的数学建模是用示例场景实现以验证概念。

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