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Design of Safety Assurance System of Specific Vehicle Information using ABPRE in the Fog Computing Environment

机译:雾计算环境下基于ABPRE的特定车辆信息安全保障系统设计

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There would be high demand for technology that monitors illegal activity and detects risk with respect to vehicles on the road in a future urban traffic system, for accident prevention. However, there may be substantial overheads from the massive amount of data that would be required for the surveillance system as it would be automatically operated and used, as further advancements are made in sensor network technology and IoT (Internet of Things). In the transportation field, systems were mainly studied to measure the driver's drowsiness or mobile phone use. These systems will collect information from several mobile devices at the same time, resulting in overhead of data. Fog computing reduces the overhead of data because it uses distributed proxy servers. However, security aspects were not considered. Encryption can be done to ensure the privacy of the information on the moving vehicles. However, in order to track a specific vehicle the data of the moving vehicles should be provided decrypted or decrypted by the secondary user. In this paper, to solve security aspects, we provide a new DSS model that utilizes ABPRE (Attribute Based Proxy Re-Encryption). The proposed system encrypts data sensed from moving vehicles. The cipher is configured to re-encrypt quickly at the proxy. The proposed method allows only users with access authority via secondary user's properties to access data with attribute-based re-encryption. Therefore, safety is secured.
机译:为了防止事故,在未来的城市交通系统中,对于监视非法活动并检测道路上的车辆的风险的技术有很高的要求。但是,随着传感器网络技术和IoT(物联网)的进一步发展,监视系统需要自动运行和使用的大量数据可能会产生大量开销。在交通领域,主要研究了用于测量驾驶员的睡意或使用手机的系统。这些系统将同时从多个移动设备收集信息,从而导致数据开销。雾计算减少了数据开销,因为它使用分布式代理服务器。但是,未考虑安全方面。可以进行加密以确保移动车辆上信息的私密性。但是,为了跟踪特定的车辆,应该由次级用户解密或解密提供行驶中的车辆的数据。在本文中,为了解决安全方面的问题,我们提供了一种利用ABPRE(基于属性的代理重新加密)的新DSS模型。所提出的系统对从行驶中的车辆感测到的数据进行加密。密码配置为在代理服务器上快速重新加密。所提出的方法仅允许具有访问权限的用户通过辅助用户的属性来访问基于属性的重新加密数据。因此,确保了安全性。

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