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Secure Location Verification Using Simultaneous Multilateration

机译:使用同步多纬度进行安全位置验证

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摘要

Substantial effort has been invested on secure location verification in hope to enable mobile wireless systems to optimize system performance or securely confer rights based on the participants' locations. However, most previous studies do not address the impact of, and are often susceptible to, collusion attacks in which adversaries share their private keys. In this paper, we propose a secure multilateration scheme. Given the same processing delay, detection threshold, and assuming zero synchronization error between verifiers, our proposed scheme achieves the highest rate of false-location detection by any verification system based solely on time-of-flight measurements. We also show that our scheme is resilient to collusion attacks if the verification system can detect the distance enlargement attack. We propose using other physical measurements to mitigate the distance enlargement, and thus also the collusion, attacks. To the best of our knowledge, this is the first attempt to prevent collusion attacks by mitigating the distance enlargement attack.
机译:为了确保移动无线系统能够优化系统性能或基于参与者的位置安全地授予权利,已经在安全的位置验证方面进行了大量的努力。但是,大多数以前的研究都没有解决共谋攻击的影响,并且通常容易受到攻击,在这些共谋中,对手共享其私钥。在本文中,我们提出了一种安全的多边方案。给定相同的处理延迟,检测阈值,并假设验证者之间的同步误差为零,我们提出的方案可通过任何仅基于飞行时间测量的验证系统实现最高的误定位检测率。我们还表明,如果验证系统可以检测到距离扩大攻击,则我们的方案可以抵抗共谋攻击。我们建议使用其他物理测量来减轻距离扩大,从而减轻共谋攻击。据我们所知,这是通过减轻距离扩大攻击来防止串通攻击的首次尝试。

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