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A privacy-preserving sensory data sharing scheme in Internet of Vehicles

机译:车联网中的隐私保护感官数据共享方案

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摘要

Internet of Vehicles (IoV), which enables information gathering and disseminating among vehicles, roadside infrastructures and surrounding environments, has received considerable attention recently. However, the flourishing of IoV still faces several challenges in terms of location privacy preservation, vehicular sensory data collection and vehicular sensory data acquisition. Aiming at these challenges, in this paper, we propose a novel efficient and location privacy-preserving data sharing scheme with collusion resistance in IoV, which enables the collection and distribution of the data captured by vehicular sensors. During the vehicular sensory data collection phase, each vehicle structures the multi-dimensional sensory data captured at different locations and exploits the modified Paillier Cryptosystem to achieve the location privacy-preserving sensory data aggregation, while the data aggregation result of multiple vehicles can be recovered by the trusted central entity. During the vehicular sensory data acquisition phase, the proposed scheme exploits the proxy re-encryption technique to achieve the location privacy-preserving data querying at the network edge, i.e., the vehicles query the RSU instead of the trusted central entity. Numerical analysis are performed to validate the effectiveness of the proposed scheme, i.e., low data querying failure probability. Security analysis and performance evaluations are also carried out to validate the security properties and show the computation and communication efficiency of the proposed scheme.
机译:车辆互联网(IoV)可以在车辆,路边基础设施和周围环境中收集和传播信息,最近受到了广泛的关注。然而,IoV的蓬勃发展在位置隐私保护,车辆感官数据收集和车辆感官数据获取方面仍然面临着若干挑战。针对这些挑战,在本文中,我们提出了一种在IoV中具有抗串扰性的高效且位置隐私保护的新型数据共享方案,该方案能够收集和分配车辆传感器捕获的数据。在车辆感官数据收集阶段,每辆车都会构造在不同位置捕获的多维感官数据,并利用改进的Paillier密码系统来实现保留位置隐私的感官数据聚集,而多个车辆的数据聚集结果可以通过以下方式恢复:受信任的中央实体。在车辆感官数据获取阶段,提出的方案利用代理重新加密技术来实现在网络边缘的位置隐私保护数据查询,即车辆查询RSU而不是受信任的中央实体。进行数值分析以验证所提出方案的有效性,即低数据查询失败概率。还进行了安全性分析和性能评估,以验证安全性并显示所提出方案的计算和通信效率。

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