On the requirements for successful GPS spoofing attacks

Nils Ole Tippenhauer, C. Pöpper, Kasper Bonne Rasmussen, Srdjan Capkun
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引用次数: 496

Abstract

An increasing number of wireless applications rely on GPS signals for localization, navigation, and time synchronization. However, civilian GPS signals are known to be susceptible to spoofing attacks which make GPS receivers in range believe that they reside at locations different than their real physical locations. In this paper, we investigate the requirements for successful GPS spoofing attacks on individuals and groups of victims with civilian or military GPS receivers. In particular, we are interested in identifying from which locations and with which precision the attacker needs to generate its signals in order to successfully spoof the receivers. We will show, for example, that any number of receivers can easily be spoofed to one arbitrary location; however, the attacker is restricted to only few transmission locations when spoofing a group of receivers while preserving their constellation. In addition, we investigate the practical aspects of a satellite-lock takeover, in which a victim receives spoofed signals after first being locked on to legitimate GPS signals. Using a civilian GPS signal generator, we perform a set of experiments and find the minimal precision of the attacker's spoofing signals required for covert satellite-lock takeover.
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GPS欺骗攻击成功的条件
越来越多的无线应用依赖GPS信号进行定位、导航和时间同步。然而,众所周知,民用GPS信号很容易受到欺骗攻击,这使得GPS接收器认为它们位于与实际物理位置不同的位置。在本文中,我们研究了利用民用或军用GPS接收机成功地对个人和群体受害者进行GPS欺骗攻击的要求。特别是,我们感兴趣的是确定攻击者需要从哪些位置和以何种精度生成信号,以便成功地欺骗接收器。我们将展示,例如,任何数量的接收器都可以很容易地被欺骗到一个任意位置;然而,当欺骗一组接收机时,攻击者被限制在少数传输位置,同时保持它们的星座。此外,我们研究了卫星锁定接管的实际方面,其中受害者在首先被锁定到合法的GPS信号后接收欺骗信号。使用民用GPS信号发生器,我们进行了一组实验,并找到了攻击者隐蔽卫星锁定接管所需的欺骗信号的最小精度。
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