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Secure Positioning in Wireless Sensor Networks through Enlargement Miscontrol Detection

机译:通过扩大错误控制检测在无线传感器网络中的安全定位

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Wireless sensor networks enable a wealth of new applications in areas such as military, medical, environmental, transportation, smart city, and so on. In many of these scenarios, we need to measure in a secure way the positions of the sensors. Existing range-based techniques for secure positioning require a burdensome infrastructure, with many fixed anchors. Reducing the infrastructure would reduce deployment cost and foster the adoption of secure positioning solutions in wireless sensor networks. In this article, we propose SPEM, a secure positioning system based on multilateration and ultra-wideband (UWB) distance bounding protocols. The key idea behind SPEM is to leverage the low probability that an adversary has of controlling enlargement attacks against UWB. We estimate such a probability by a thorough study and signal-level simulations of the UWB physical layer. We test SPEM both in a simulated environment and in a real indoor environment using real UWB transceivers. We show that SPEM needs far less infrastructure than state-of-the- art solutions (-22% to -93%, depending on the anchor deployment method), while achieving high levels of security against smart and determined adversaries.
机译:无线传感器网络在军事,医疗,环境,交通,智慧城市等领域中实现了许多新应用。在许多此类情况下,我们需要以安全的方式测量传感器的位置。现有的用于安全定位的基于范围的技术需要繁重的基础架构,并且具有许多固定锚点。减少基础架构将降低部署成本,并促进在无线传感器网络中采用安全定位解决方案。在本文中,我们提出了SPEM,这是一种基于多纬度和超宽带(UWB)距离限制协议的安全定位系统。 SPEM背后的关键思想是利用对手控制UWB扩大攻击的低概率。我们通过对UWB物理层的深入研究和信号级仿真来估计这种可能性。我们使用真实的UWB收发器在模拟环境和真实室内环境中测试SPEM。我们证明,SPEM与最新解决方案相比所需的基础设施要少得多(-22%至-93%,具体取决于锚点部署方法),同时可以针对智能和确定的对手实现高级别的安全性。

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