论文标题

检测隐藏在抗复印2D条形码上的信息

Detection of Information Hiding at Anti-Copying 2D Barcodes

论文作者

Xie, Ning, Hu, Ji, Chen, Junjie, Zhang, Qiqi, Chen, Changsheng

论文摘要

本文涉及检测使用隐藏在反复印2D条形码上的信息的问题。先前的隐藏信息检测方案是基于启发式的或基于机器学习(ML)。先前基于启发式的方案的主要限制是,它们没有回答为什么可以检测到2D条形码的信息的基本问题。先前基于MLB的信息方案的主要限制是它们缺乏稳健性,因为印刷的2D条形码非常依赖于环境,因此,在一个环境中训练的信息隐藏检测方案通常在另一个环境中无法很好地工作。在本文中,我们在现有的抗复印2D条形码上提出了两个隐藏的信息检测方案。第一个方案是直接使用像素距离来检测2D条形码中信息隐藏方案的使用,该方案指的是基于像素距离的检测(PDBD)方案。第二个方案是首先计算原始信号的方差以及恢复的信号和原始信号之间的协方差,然后基于方差结果,检测到2D条形码中信息隐藏方案的使用,称为基于像素方差的检测(PVBD)方案。此外,我们设计了高级IC攻击,以评估两个现有的反复印2D条形码的安全性。我们实施了计划,并在不同的捕获设备(例如扫描仪和照相手机)下进行了方案和先前的方案之间进行了广泛的性能比较。我们的实验结果表明,PVBD方案可以在2LQR代码和LCAC 2D条形码上正确检测隐藏信息的存在。此外,成功攻击我们的IC攻击的概率对于2LQR代码实现了0.6538,而LCAC 2D条形码为1。

This paper concerns the problem of detecting the use of information hiding at anti-copying 2D barcodes. Prior hidden information detection schemes are either heuristicbased or Machine Learning (ML) based. The key limitation of prior heuristics-based schemes is that they do not answer the fundamental question of why the information hidden at a 2D barcode can be detected. The key limitation of prior MLbased information schemes is that they lack robustness because a printed 2D barcode is very much environmentally dependent, and thus an information hiding detection scheme trained in one environment often does not work well in another environment. In this paper, we propose two hidden information detection schemes at the existing anti-copying 2D barcodes. The first scheme is to directly use the pixel distance to detect the use of an information hiding scheme in a 2D barcode, referred as to the Pixel Distance Based Detection (PDBD) scheme. The second scheme is first to calculate the variance of the raw signal and the covariance between the recovered signal and the raw signal, and then based on the variance results, detects the use of information hiding scheme in a 2D barcode, referred as to the Pixel Variance Based Detection (PVBD) scheme. Moreover, we design advanced IC attacks to evaluate the security of two existing anti-copying 2D barcodes. We implemented our schemes and conducted extensive performance comparison between our schemes and prior schemes under different capturing devices, such as a scanner and a camera phone. Our experimental results show that the PVBD scheme can correctly detect the existence of the hidden information at both the 2LQR code and the LCAC 2D barcode. Moreover, the probability of successfully attacking of our IC attacks achieves 0.6538 for the 2LQR code and 1 for the LCAC 2D barcode.

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