首页> 外文会议>Infrared, millimeter-wave, and terahertz technologies III >Experimental Methods of Indoor Millimeter-wave Radiometric Imaging for Personnel Concealed Contraband Detection
【24h】

Experimental Methods of Indoor Millimeter-wave Radiometric Imaging for Personnel Concealed Contraband Detection

机译:室内毫米波辐射成像技术在人员隐匿带探测中的实验方法

获取原文
获取原文并翻译 | 示例

摘要

The increasingly emerging terrorism attacks and violence crimes around the world have posed severe threats to public security, so carrying out relevant research on advanced experimental methods of personnel concealed contraband detection is crucial and meaningful. All of the advantages of imaging covertly, avoidance of interference with other systems, intrinsic property of being safe to persons under screening , and the superior ability of imaging through natural or manmade obscurants, have significantly combined to enable millimeter-wave (MMW) radiometric imaging to offer great potential in personnel concealed contraband detection. Based upon the current research status of MMW radiometric imaging and urgent demands of personnel security screening, this paper mainly focuses on the experimental methods of indoor MMW radiometric imaging. The reverse radiation noise resulting from super-heterodyne receivers seriously affects the image experiments carried out at short range, so both the generation mechanism and reducing methods of this noise are investigated. Then, the benefit of sky illumination no longer exists for the indoor radiometric imaging, and this leads to the decrease in radiometric temperature contrast between target and background. In order to enhance the radiometric temperature contrast for improving indoor imaging performance, the noise illumination technique is adopted in the indoor imaging scenario. In addition, the speed and accuracy of concealed contraband detection from acquired MMW radiometric images are usually restricted to the deficiencies in traditional artificial interpretation by security inspectors, thus an automatic recognition and location algorithm by integrating improved Fuzzy C-means clustering with moment invariants is put forward. A series of original results are also presented to demonstrate the significance and validity of these methods.
机译:全世界越来越多的恐怖主义袭击和暴力犯罪正在对公共安全构成严重威胁,因此,对人员隐匿违禁品检测的先进实验方法进行相关研究至关重要且有意义。秘密进行成像的所有优点,避免与其他系统的干扰,对被检查人员安全的固有属性以及通过自然或人工遮蔽剂成像的卓越能力,已显着结合起来,可以进行毫米波(MMW)辐射成像为人员隐藏违禁品检测提供了巨大的潜力。基于毫米波辐射成像的研究现状和人员安全检查的迫切需求,本文主要研究室内毫米波辐射成像的实验方法。超外差接收器产生的反向辐射噪声严重影响短距离进行的图像实验,因此研究了这种噪声的产生机理和降低方法。然后,对于室内辐射成像,不再存在天空照明的好处,这导致目标和背景之间的辐射温度对比度降低。为了增强辐射温度对比度以改善室内成像性能,在室内成像场景中采用了噪声照明技术。此外,从获取的MMW辐射图像中隐藏违禁品检测的速度和准确性通常受限于安全检查员传统人工解释的缺陷,因此提出了一种将改进的Fuzzy C-means聚类与矩不变性集成在一起的自动识别和定位算法。向前。还提出了一系列原始结果,以证明这些方法的重要性和有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号