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Detecting Indentations on Documents Pressed by Pen Tip Force Using a Near Infrared Light Emitting Diode (NIR LED) and Shape from Shading

机译:使用近红外发光二极管(NIR LED)检测笔尖力压在文档上的压痕以及阴影形状

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摘要

We proposed the new method that detected indentations pressed by pen tip force on paper using an oblique near infrared (NIR) emitting by light emitting diodes (LEDs). According to conventional methods indentations were observed by document examiners' eyes using a microscope. However it is difficult to estimate depths of the indentations because human eyes only can observe shades and brightness made by indentations instead of measuring the depths of indentations. Using a confocal laser microscope is able to directly measure the depths of indentations. However this method needs to take long time and instruments are expensive. Using a NIR LED and an optical model called shape from shading resolved the issues of time and cost. It is useful for forensic document examiners to approximately evaluate the depths of indentations of handwriting by our proposal method because the method will be lead to convenient discrimination between forgery handwriting and genuine one.
机译:我们提出了一种新方法,该方法使用发光二极管(LED)发出的倾斜近红外(NIR)来检测由笔尖力压在纸上的压痕。根据常规方法,使用显微镜在文件检查者的眼睛中观察压痕。然而,难以估计压痕的深度,因为人眼只能观察到压痕产生的阴影和亮度,而不是测量压痕的深度。使用共聚焦激光显微镜能够直接测量压痕的深度。然而,该方法需要花费很长时间并且仪器昂贵。使用近红外LED和称为遮光的光学模型解决了时间和成本问题。对于我们的提议方法,法医证件检查员大致评估手写凹痕的深度很有用,因为该方法将方便区分伪造笔迹和真笔迹。

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