Improving ear recognition robustness against 3D rotation using statistical modelling based on forensic classification

T. Minamidani, Hideyashu Sai, D. Watabe
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Abstract

Even though ear shape is used in forensic investigations, an ear identification system for assisting forensic experts is not well developed. One of the reasons for this is the three-dimensional (3D) concave shape of the ear; this changes its two-dimensional (2D) appearance when camera angles change. 3D statistical modelling is necessary to compensate for these changes in 2D appearance. In this study, we aim to increase the number of 3D statistical ear models based on a few forensic classification methods of ear shapes. Experimental evaluation shows that morphological classification based on the antihelix can improve the robustness of ear recognition against the change in camera angles.
基于法医分类的统计建模提高耳朵识别对3D旋转的鲁棒性
虽然在法医调查中使用了耳朵的形状,但还没有开发出辅助法医鉴定的耳朵识别系统。造成这种情况的原因之一是耳朵的三维(3D)凹形状;当相机角度改变时,它的二维(2D)外观就会改变。三维统计建模是必要的,以弥补这些变化在二维外观。在本研究中,我们的目标是基于几种耳形的法医分类方法来增加3D统计耳模型的数量。实验结果表明,基于反螺旋的形态分类可以提高耳朵识别对相机角度变化的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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