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Guaranteeing spoof-resilient multi-robot networks

机译:保证恶搞弹性多机器人网络

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摘要

Multi-robot networks use wireless communication to provide wide-ranging services such as aerial surveillance and unmanned delivery. However, effective coordination between multiple robots requires trust, making them particularly vulnerable to cyber-attacks. Specifically, such networks can be gravely disrupted by the Sybil attack, where even a single malicious robot can spoof a large number of fake clients. This paper proposes a new solution to defend against the Sybil attack, without requiring expensive cryptographic key-distribution. Our core contribution is a novel algorithm implemented on commercial Wi-Fi radios that can “sense” spoofers using the physics of wireless signals. We derive theoretical guarantees on how this algorithm bounds the impact of the Sybil Attack on a broad class of multi-robot problems, including locational coverage and unmanned delivery. We experimentally validate our claims using a team of AscTec quadrotor servers and iRobot Create ground clients, and demonstrate spoofer detection rates over 96%.
机译:多机器人网络使用无线通信来提供广泛的服务,例如空中监视和无人值守交付。但是,多个机器人之间的有效协调需要信任,这使得它们特别容易受到网络攻击。具体来说,此类网络可能会受到Sybil攻击的严重破坏,即使是单个恶意机器人也可以欺骗大量假客户端。本文提出了一种新的解决方案,可以防御Sybil攻击,而无需昂贵的加密密钥分发。我们的核心贡献是在商业Wi-Fi无线电上实现的新颖算法,该算法可以利用无线信号的物理原理“感知”欺骗者。我们得出关于该算法如何限制Sybil攻击对多种多机器人问题(包括位置覆盖和无人值守)的影响的理论保证。我们使用一组AscTec四旋翼服务器和iRobot Create地面客户端通过实验验证了我们的主张,并证明了超过96%的欺骗者检测率。

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