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Copy detection pattern-based document protection for variable media

机译:基于拷贝检测模式的可变介质文档保护

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摘要

A copy detection pattern (CDP) is a shape (typically a rectangle) filled with pixels of random grey levels and incorporated in a digital document to be printed as a unique physical document. It is a powerful tool to detect copies. Whenever a document is printed and scanned, the grey levels of the pixels intermix in a measurable way. When a document of unknown legitimacy containing a CDP is scanned, the CDP distortion is measured and matched against a pre-determined threshold. If this measure is higher than the threshold, an intermediary scan and re-print most likely occurred. For acceptable accuracy, the print quality needs to be reasonably good; therefore in CDP applications, the printer, the CDP media and the scanner must usually be of known type. However, some applications could greatly benefit from CDP features, but have little control over the media. In such applications, the variance of the measurements, owing to media quality variability, is simply too large for a reasonably conclusive detection, at least with current verification techniques. Thus, the authors propose a print??scan model and a smart attack based on the model that causes the CDP copy detection to be mostly ineffective. To handle such an attack scenario and allow a range of different media, new CDP detection metrics were proposed. Their efficacies were tested for different paper types and different attack scenarios. Experimental analysis shows that the proposed features can be used to significantly improve copy detection accuracy.
机译:复制检测图案(CDP)是填充有随机灰度级像素的形状(通常是矩形),并包含在数字文档中以作为唯一的物理文档进行打印。它是检测副本的强大工具。每当打印和扫描文档时,像素的灰度级都会以可测量的方式混合在一起。扫描包含CDP的合法性未知的文档时,将测量CDP失真并将其与预定阈值进行匹配。如果此措施高于阈值,则极有可能发生中间扫描和重新打印。为了达到可接受的精度,打印质量必须相当好;因此,在CDP应用程序中,打印机,CDP介质和扫描仪通常必须为已知类型。但是,某些应用程序可能会从CDP功能中受益匪浅,但对媒体的控制却很少。在这样的应用中,由于介质质量的可变性,至少对于当前的验证技术而言,由于合理的结论性检测,测量的差异太大。因此,作者提出了一种打印扫描模型和一种基于该模型的智能攻击,该模型使CDP复制检测大部分无效。为了处理这种攻击情况并允许使用多种不同的媒体,提出了新的CDP检测指标。针对不同的纸张类型和不同的攻击场景测试了它们的效率。实验分析表明,所提出的功能可用于显着提高复印检测精度。

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  • 来源
    《Image Processing, IET》 |2012年第8期|p.1102-1113|共12页
  • 作者

    Dirik A.E.; Haas B.;

  • 作者单位

    Uludag University, Turkey;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
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