首页> 外文会议>Conference on Passive Millimetre-Wave and Terahertz Imaging and Technology >Scene simulation for passive and active millimetre and sub-millimetre wave imaging for security scanning and medical applications
【24h】

Scene simulation for passive and active millimetre and sub-millimetre wave imaging for security scanning and medical applications

机译:用于安全扫描和医疗应用的无源毫米和子毫米波成像的场景仿真

获取原文

摘要

The benefits of moving up in frequency from the millimetre wave region towards a frequency of 1 THz are those of smaller systems and better diffraction limited image resolutions. Limitations will be examined, considering effects such as the absorption in the atmosphere, various materials, the human body and fundamental radiometric noise limitations. The physics behind these considerations will be examined and results and artefacts presented using scene simulation. Conclusions are that above 500 GHz high atmospheric absorption severely limits imager to subject distances to a few hundred metres. The effect of absorption is poor subject illumination and high signal attenuation between the subject and the imager. These limitations may be over come partially, for short imager to subject distances (less than a few hundred metres), by using active illumination with narrow bandwidth radiation sources. However, transmit powers rise steeply with imager to subject distance and radiation frequency, lying typically between 1 mW and 1 W over the frequency band 500 GHz to 1 THz, for a radiation bandwidth of 1 GHz and an imager to subject distance of 20 m. Similar systems analysis for medical applications indicates that the high attenuation in human tissue limits probing or penetration distances of the radiation. Radiometric photon noise, electrical properties of human tissue and irradiation power restrictions (1 mW/cm~2) limit maximum diagnostic depths to between two and one millimetres between the frequencies of 100 GHz and 1 THz.
机译:从毫米波区域向1 THz的频率向上移动的频率的好处是较小的系统和更好的衍射有限图像分辨率。将考虑局限性,考虑诸如大气中的吸收,各种材料,人体和基本辐射噪声限制等效果。将检查这些考虑因素背后的物理和使用场景模拟提出的结果和人工制品。结论是,500 GHz高大气吸收严重限制成像距离对象距离到几百米。吸收的效果是受试者和象仪之间的患者照明和高信号衰减。通过使用具有窄带宽辐射源的主动照明,这些限制可以部分地部分地,对​​于短的成像仪,通过使用有源照明来对象距离(小于几百米)。然而,发射功率急剧上升到对象距离和辐射频率,通常在频带500GHz到1至1Th上方1 MW和1W之间,用于1GHz的辐射带宽和20米的对象距离。医学应用的类似系统分析表明人体组织中的高衰减限制了辐射的探测或穿透距离。辐射光子噪声,人体组织的电性能和辐射功率限制(1 MW / cm〜2)将最大诊断深度限制在100GHz和1至1至1至THz之间的2和1毫米之间。

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