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Network intrusion detection system for UAV ad-hoc communication: From methodology design to real test validation

机译:用于无人机特设通信的网络入侵检测系统:从方法设计到真实测试验证

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The use of a swarm of low-cost, mission-specific drones to form a Flying Ad-hoc Network (FANET) has literally become a 'hotspot' in the drone community. A number of studies have been conducted on how to achieve a FANET, but few have considered the security perspectives of this subject. FANET's unique features have made it difficult to strengthen its defense against ever-changing security threats. Today, more and more FANET applications are implemented into civil airspace, but the development of FANET security has remained unsatisfactory. In this paper, we try to address this issue by proposing a new Intrusion Detection System (IDS), an hybrid method based on both spectral traffic analysis and a robust controller / observer for anomaly estimation inside UAV networks. The proposed hybrid method considers, as a preliminary step, a statistical signature of the traffic exchanged in the network. By examining the resulted signatures, the differences are used to select the accurate model for accurate estimation of that abnormal traffic. The proposed IDS design has been successfully applied to some relevant practical problems such as ad hoc networks for aerial vehicles, and the effectiveness is illustrated by using real traffic traces including Distributed Denial of Service (DDoS) attacks. Our first results show promising perspectives for Intrusion Detection System (IDS) in UAV communication networks. Indeed, different types of anomaly have been considered and they are all accurately detected by the intrusion detection process we propose in this paper. Finally, both simulation-based validation and real-time real-world based implementation of our IDS are described in this article. (C) 2018 Elsevier B.V. All rights reserved.
机译:使用廉价的,特定于任务的无人机群来形成飞行特设网络(FANET),实际上已经成为无人机界的“热点”。已经对如何实现FANET进行了许多研究,但很少有人考虑该主题的安全性观点。 FANET的独特功能使其难以增强对不断变化的安全威胁的防御能力。如今,越来越多的FANET应用程序已在民用空域中实现,但是FANET安全性的发展仍然不尽人意。在本文中,我们尝试通过提出一种新的入侵检测系统(IDS),基于频谱流量分析和鲁棒的控制器/观察器的混合方法来解决这个问题,以用于无人机网络内部的异常估计。所提出的混合方法将网络中交换流量的统计签名作为预备步骤。通过检查结果签名,可以使用差异来选择正确的模型,以准确估算该异常流量。提出的IDS设计已成功应用于一些相关的实际问题,例如飞机的ad hoc网络,并通过使用包括分布式拒绝服务(DDoS)攻击在内的实际流量跟踪来说明其有效性。我们的第一个结果显示了无人机通信网络中入侵检测系统(IDS)的广阔前景。确实,已经考虑了不同类型的异常,并且通过我们在本文中提出的入侵检测过程可以对所有异常进行准确地检测。最后,本文介绍了基于仿真的验证和基于实时真实世界的IDS实现。 (C)2018 Elsevier B.V.保留所有权利。

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