差分信令的电磁信号注入攻击

Youqian Zhang, Kasper Bonne Rasmussen
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引用次数: 0

摘要

差分信号是一种利用两个互补的电信号对信息进行编码的数据传输方法。这允许接收器通过观察两个信号之间的差异来拒绝任何噪声,假设噪声对两个信号的影响是相等的。许多协议,如USB、以太网和HDMI使用差分信号在嘈杂环境中实现健壮的通信通道。这种方法通常效果很好,并且导致许多人认为将攻击信号远程注入这种差分对是不可行的。在本文中,我们挑战了这一假设,并表明攻击者实际上可以从远处注入恶意信号,纯粹使用共模注入,即同时注入到两条线路中。我们详细解释了攻击者可以利用的原理,以实现成功注入任意位,并分析了注入更长的任意消息的成功率。我们在一个真实的系统上演示了这种攻击,并表明成功率可以达到高达。最后,我们提出了一个案例研究,其中我们无线注入消息到控制器局域网(CAN)总线,这是一种差分信号总线协议,用于许多关键应用,包括汽车和航空领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electromagnetic Signal Injection Attacks on Differential Signaling
Differential signaling is a method of data transmission that uses two complementary electrical signals to encode information. This allows a receiver to reject any noise by looking at the difference between the two signals, assuming the noise affects both signals equally. Many protocols such as USB, Ethernet, and HDMI use differential signaling to achieve a robust communication channel in a noisy environment. This generally works well and has led many to believe that it is infeasible to remotely inject attacking signals into such a differential pair. In this paper, we challenge this assumption and show that an adversary can in fact inject malicious signals from a distance, purely using common-mode injection, i.e., injecting into both wires at the same time. We explain in detail the principles that an attacker can exploit to achieve a successful injection of an arbitrary bit, and we analyze the success rate of injecting longer arbitrary messages. We demonstrate the attack on a real system and show that the success rate can reach as high as . Finally, we present a case study where we wirelessly inject a message into a Controller Area Network (CAN) bus, which is a differential signaling bus protocol used in many critical applications, including the automotive and aviation sector.
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