论文标题

pdnpulse:使用内在的动力输送网络传感PCB异常

PDNPulse: Sensing PCB Anomaly with the Intrinsic Power Delivery Network

论文作者

Zhu, Huifeng, Shan, Haoqi, Sullivan, Dean, Guo, Xiaolong, Jin, Yier, Zhang, Xuan

论文摘要

现代电子系统和嵌入式设备中无处不在的印刷电路板(PCB)的存在使它们的完整性成为最大的安全问题。为了利用规模经济,当今的PCB设计和制造经常由全球各地的供应商执行,使它们遇到分段的PCB供应链沿线的许多安全漏洞。此外,PCB设计的复杂性日益复杂也为整个PCB一生的每个阶段都可以实施众多偷偷摸摸的板级攻击留出足够的空间,从而威胁着许多电子设备。在本文中,我们提出了基于电力输送网络(PDN)的PCB异常检测框架PDNPulse,可以识别出广泛的董事会级恶意修改。 PDNPulse利用了一个事实,即PDN的特性不可避免地会受到对PCB的修改的影响,无论多么微小。通过检测对PDN阻抗曲线的变化并使用基于Frechet距离的异常检测算法,PDNPulse可以在整个系统上稳健而成功地识别恶意修改。使用PDNPulse,我们对七个商业式PCB进行了广泛的实验,涵盖了不同的设计量表,不同的威胁模型和七种不同的异常类型。结果证实,PDNPulse在攻击和防御之间产生了有效的安全性不对称性。

The ubiquitous presence of printed circuit boards (PCBs) in modern electronic systems and embedded devices makes their integrity a top security concern. To take advantage of the economies of scale, today's PCB design and manufacturing are often performed by suppliers around the globe, exposing them to many security vulnerabilities along the segmented PCB supply chain. Moreover, the increasing complexity of the PCB designs also leaves ample room for numerous sneaky board-level attacks to be implemented throughout each stage of a PCB's lifetime, threatening many electronic devices. In this paper, we propose PDNPulse, a power delivery network (PDN) based PCB anomaly detection framework that can identify a wide spectrum of board-level malicious modifications. PDNPulse leverages the fact that the PDN's characteristics are inevitably affected by modifications to the PCB, no matter how minuscule. By detecting changes to the PDN impedance profile and using the Frechet distance-based anomaly detection algorithms, PDNPulse can robustly and successfully discern malicious modifications across the system. Using PDNPulse, we conduct extensive experiments on seven commercial-off-the-shelf PCBs, covering different design scales, different threat models, and seven different anomaly types. The results confirm that PDNPulse creates an effective security asymmetry between attack and defense.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源