基于太赫兹与三维视频图像语义融合的太赫兹智能视频监控方法研究

A. Morozov, O. Sushkova, I. Kershner, A. F. Polupanov
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引用次数: 2

摘要

太赫兹视频监控在公共场所安全领域开辟了新的独特机会,因为它可以发现并从而防止使用隐藏的武器和其他危险物品。虽然第一代太赫兹视频监控系统已经问世并在安防系统市场上销售,但尚未得到广泛应用。其主要原因是,现有的太赫兹图像分析方法无法对武器和其他危险物体进行隐藏和全自动识别,只能在经过专门训练的操作人员的控制下使用。因此,与基于组织安全边界和对来访者进行人工检查的标准方法相比,太赫兹视频监视似乎更昂贵,效率更低。本文研究了一种太赫兹视频图像自动分析方法的开发问题。作为该方法的基础,提出了利用不同物理原理获得的视频图像的语义融合,其思想是用一幅视频图像的语义内容来控制另一幅视频图像的处理和分析。例如,一个人的身体、手臂和腿的3D坐标信息可以用于分析和正确解释在太赫兹视频图像上观察到的颜色区域。为实现视频数据的语义融合,开发了面向对象逻辑编程的特殊手段,包括Actor Prolog逻辑语言的特殊内置类,用于采集、处理和分析可见光、红外和太赫兹范围内的视频数据以及3D视频数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a Method of Terahertz Intelligent Video Surveillance Based on the Semantic Fusion of Terahertz and 3D Video Images
The terahertz video surveillance opens up new unique opportunities in the field of security in public places, as it allows to detect and thus to prevent usage of hidden weapons and other dangerous items. Although the first generation of terahertz video surveillance systems has already been created and is available on the security systems market, it has not yet found wide application. The main reason for this is in that the existing methods for analyzing terahertz images are not capable of providing hidden and fully-automatic recognition of weapons and other dangerous objects and can only be used under the control of a specially trained operator. As a result, the terahertz video surveillance appears to be more expensive and less efficient in comparison with the standard approach based on the organizing security perimeters and manual inspection of the visitors. In the paper, the problem of the development of a method of automatic analysis of the terahertz video images is considered. As a basis for this method, it is proposed to use the semantic fusion of video images obtained using different physical principles, the idea of which is in that the semantic content of one video image is used to control the processing and analysis of another video image. For example, the information about 3D coordinates of the body, arms, and legs of a person can be used for analysis and proper interpretation of color areas observed on a terahertz video image. Special means of the object-oriented logic programming are developed for the implementation of the semantic fusion of the video data, including special built-in classes of the Actor Prolog logic language for acquisition, processing, and analysis of video data in the visible, infrared, and terahertz ranges as well as 3D video data.
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