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Cross layer attacks on GSM mobile networks using software defined radios

机译:使用软件无线电对GSM移动网络进行跨层攻击

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The ubiquitous adoption of cellular technologies, such as, Long Term Evolution (LTE) and Wide-band Code Division Multiple Access (WCDMA) has not diminished the impact of Global System for Mobile communication (GSM) technologies. Despite 20 years of deployment, GSM still poses significant security threats to its users due to adversaries exploiting protocol vulnerabilities. In this paper, we present an attack which leverages cross-layer information from network or data link layers to craft an attack vector targeting the physical layer. The cross-layer attack provides attacker sufficient knowledge to specifically target cells, control channels, and mobile stations (MS) with minimal investment of communication and energy resources. We have designed and implemented an experimental testbed, which comprises of, software defined radios (SDR) (USRP and gnuradio), open source GSM channel sniffer (gr-gsm), and distributed processing engine (Apache Spark). The experimental testbed will also facilitate cloning a base transceiver station (BTS) which will benefit from availability of cross-layer information to create customized attack vectors. The cross-layer attack capability on our experimental testbed provides a cost effective scheme to achieve desired benefits with optimal usage of communication and energy resources. Experimental results shows that the testbed can be used to successfully attack multiple mobile stations with minimal usage of power resources.
机译:诸如长期演进(LTE)和宽带码分多址(WCDMA)之类的蜂窝技术的普遍采用并没有减少全球移动通信系统(GSM)技术的影响。尽管部署了20年,但由于攻击者利用协议漏洞,GSM仍然对其用户构成重大安全威胁。在本文中,我们提出一种利用网络或数据链路层的跨层信息来设计针对物理层的攻击向量的攻击。跨层攻击以最小的通信和能源投资为攻击者提供了足够的知识,使其可以专门针对小区,控制信道和移动台(MS)。我们已经设计并实现了一个实验性测试平台,其中包括软件定义无线电(SDR)(USRP和gnuradio),开源GSM信道嗅探器(gr-gsm)和分布式处理引擎(Apache Spark)。实验性试验台还将有助于克隆基站收发器(BTS),这将从跨层信息的可用性中受益,以创建定制的攻击向量。我们实验性试验台上的跨层攻击功能提供了一种经济高效的方案,可以通过最佳利用通信和能源资源来实现预期的收益。实验结果表明,该测试平台可用于以最少的功率资源成功攻击多个移动台。

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