Signal Jamming Attacks Against Communication-Based Train Control: Attack Impact and Countermeasure

S. Lakshminarayana, Jabir Shabbir Karachiwala, Sang-Yoon Chang, G. Revadigar, Sristi Lakshmi Sravana Kumar, David K. Y. Yau, Yih-Chun Hu
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引用次数: 19

Abstract

We study the impact of signal jamming attacks against the communication based train control (CBTC) systems and develop the countermeasures to limit the attacks' impact. CBTC supports the train operation automation and moving-block signaling, which improves the transport efficiency. We consider an attacker jamming the wireless communication between the trains or the train to wayside access point, which can disable CBTC and the corresponding benefits. In contrast to prior work studying jamming only at the physical or link layer, we study the real impact of such attacks on end users, namely train journey time and passenger congestion. Our analysis employs a detailed model of leaky medium-based communication system (leaky waveguide or leaky feeder/coaxial cable) popularly used in CBTC systems. To counteract the jamming attacks, we develop a mitigation approach based on frequency hopping spread spectrum taking into account domain-specific structure of the leaky-medium CBTC systems. Specifically, compared with existing implementations of FHSS, we apply FHSS not only between the transmitter-receiver pair but also at the track-side repeaters. To demonstrate the feasibility of implementing this technology in CBTC systems, we develop a FHSS repeater prototype using software-defined radios on both leaky-medium and open-air (free-wave) channels. We perform extensive simulations driven by realistic running profiles of trains and real-world passenger data to provide insights into the jamming attack's impact and the effectiveness of the proposed countermeasure.
基于通信的列车控制信号干扰攻击:攻击影响及对策
研究了信号干扰攻击对基于通信的列车控制(CBTC)系统的影响,并制定了限制攻击影响的对策。CBTC支持列车运行自动化和行块信号,提高了运输效率。我们考虑攻击者干扰列车之间或列车到路旁接入点的无线通信,从而使CBTC失效,并使相应的效益失效。与之前只研究物理层或链路层干扰的工作不同,我们研究了这种攻击对最终用户的实际影响,即火车行程时间和乘客拥堵。我们的分析采用了CBTC系统中常用的基于泄漏介质的通信系统(泄漏波导或泄漏馈线/同轴电缆)的详细模型。为了对抗干扰攻击,考虑到泄漏介质CBTC系统的特定域结构,我们开发了一种基于跳频扩频的缓解方法。具体来说,与现有的FHSS实现方法相比,我们不仅在收发对之间应用了FHSS,而且在轨道侧中继器上也应用了FHSS。为了证明在CBTC系统中实现该技术的可行性,我们在泄漏介质和露天(自由波)信道上使用软件定义无线电开发了一个FHSS中继器原型。我们通过列车的真实运行概况和现实世界的乘客数据进行了广泛的模拟,以深入了解干扰攻击的影响和所提出的对策的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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