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A secure location-based alert system with tunable privacy-performance trade-off

机译:基于安全的位置的警报系统,可调谐隐私性能权衡

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摘要

Monitoring location updates from mobile users has important applications in many areas, ranging from public health (e.g., COVID-19 contact tracing) and national security to social networks and advertising. However, sensitive information can be derived from movement patterns, thus protecting the privacy of mobile users is a major concern. Users may only be willing to disclose their locations when some condition is met, for instance in proximity of a disaster area or an event of interest. Currently, such functionality can be achieved usingsearchable encryption. Such cryptographic primitives provide provable guarantees for privacy, and allow decryption only when the location satisfies some predicate. Nevertheless, they rely on expensivepairing-based cryptography (PBC), of which direct application to the domain of location updates leads to impractical solutions. We propose secure and efficient techniques for private processing of location updates that complement the use of PBC and lead to significant gains in performance by reducing the amount of required pairing operations. We implement two optimizations that further improve performance: materialization of results to expensive mathematical operations, and parallelization. We also propose an heuristic that brings down the computational overhead through enlarging an alert zone by a small factor (given as system parameter), therefore trading off a small and controlled amount of privacy for significant performance gains. Extensive experimental results show that the proposed techniques significantly improve performance compared to the baseline, and reduce the searchable encryption overhead to a level that is practical in a computing environment with reasonable resources, such as the cloud.
机译:监控移动用户的位置更新在许多领域具有重要应用,从公共卫生(例如,Covid-19联系方式)和国家安全到社交网络和广告。然而,敏感信息可以从运动模式中导出,从而保护移动用户的隐私是一个主要问题。用户可能只愿意在满足某些条件时披露他们的位置,例如在灾区接近灾区或感兴趣的事件时。目前,可以实现这样的功能。此类加密原语提供了隐私的可证明的保证,并且仅在某些谓词满足某些谓词时才能允许解密。尽管如此,它们依靠昂贵的基于PAIRING的加密(PBC),其中直接应用于位置更新的域导致不切实际的解决方案。我们提出了用于私人处理的安全和有效的技术,以补充使用PBC的使用,并通过减少所需配对操作的数量来实现性能的显着增益。我们实施了两种优化,进一步提高了性能:对昂贵的数学运算和并行化的结果的实现。我们还提出了一种启发式,通过将一个小因素(作为系统参数提供)扩大警报区域来提出计算开销,从而交易小于和受控的隐私,以实现显着性能。广泛的实验结果表明,与基线相比,所提出的技术显着提高了性能,并将可搜索的加密开销减少到具有合理资源的计算环境中实用的水平,例如云。

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