论文标题

使用可信赖的硬件安全有效的基于轨迹的接触跟踪

Secure and Efficient Trajectory-Based Contact Tracing using Trusted Hardware

论文作者

Kato, Fumiyuki, Cao, Yang, Yoshikawa, Masatoshi

论文摘要

COVID-19大流行促使技术措施控制了疾病的传播。私人接触跟踪(PCT)是目的的有前途的技术之一。但是,最近提出的基于蓝牙的PCT在功能和灵活性方面有几个局限性。现有系统只能检测直接接触(即人类接触),但无法检测间接接触(即人类对象,例如通过表面传播)。此外,随着环境状况和病毒的性质,风险接触的规则不能灵活地改变。在本文中,我们使用受信任的硬件提出了一个安全有效的基于轨迹的PCT系统。我们将基于轨迹的PCT形式化为经过良好研究的私人集合(PSI)的概括,该集合主要基于加密原始图,因此不足。我们通过利用Intel SGX等受信任的硬件并设计一种新颖的算法来实现安全,高效和灵活的PCT系统来解决问题。我们对现实世界数据的实验表明,所提出的系统可以实现高性能和可扩展性。具体而言,我们的系统(一台具有Intel SGX的一台机器)可以在几秒钟内对1亿个轨迹数据记录进行数千个查询。

The COVID-19 pandemic has prompted technological measures to control the spread of the disease. Private contact tracing (PCT) is one of the promising techniques for the purpose. However, the recently proposed Bluetooth-based PCT has several limitations in terms of functionality and flexibility. The existing systems are only able to detect direct contact (i.e., human-human contact), but cannot detect indirect contact (i.e., human-object, such as the disease transmission through surface). Moreover, the rule of risky contact cannot be flexibly changed with the environmental situation and the nature of the virus. In this paper, we propose a secure and efficient trajectory-based PCT system using trusted hardware. We formalize trajectory-based PCT as a generalization of the well-studied Private Set Intersection (PSI), which is mostly based on cryptographic primitives and thus insufficient. We solve the problem by leveraging trusted hardware such as Intel SGX and designing a novel algorithm to achieve a secure, efficient and flexible PCT system. Our experiments on real-world data show that the proposed system can achieve high performance and scalability. Specifically, our system (one single machine with Intel SGX) can process thousands of queries on 100 million records of trajectory data in a few seconds.

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