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Secure and precise location verification using distance bounding and simultaneous multilateration

机译:使用距离限制和同时多重定位来进行安全而精确的位置验证

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Due to the widespread adoption of the Global Positioning System (GPS), many systems have been designed to use the location information of participants. When these systems confer rights (such as access rights) based on location, such claim must be securely verified in order to prevent attackers from gaining access to resources that should be restricted. Substantial effort has been made on secure location verification; however, previous work does not address the impact of collusion attacks where adversaries share their private keys nor do they address a possible jamming attack where attackers inject a high amount of noise to prevent successful challenge and response receptions. In this paper, we propose a secure multilateration scheme that provides maximal security achievable by any time-of-flight based system that does not employ other verification methods.
机译:由于全球定位系统(GPS)的广泛采用,许多系统已被设计为使用参与者的位置信息。当这些系统基于位置授予权限(例如访问权限)时,必须对此类声明进行安全验证,以防止攻击者获得对应受限制的资源的访问权限。在安全位置验证方面已经做出了巨大努力;但是,先前的工作没有解决共谋攻击对对手共享其私钥的影响,也没有解决可能的干扰攻击,即攻击者注入大量噪声以阻止成功的挑战和响应接收。在本文中,我们提出了一种安全的多边计划,该计划可提供任何不使用其他验证方法的基于飞行时间的系统都可实现的最大安全性。

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