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Application of infrared imaging systems to maritime security.

机译:红外成像系统在海上安全中的应用。

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摘要

Enhancing maritime security through video based systems is a very challenging task, not only due to the different scales of vessels to be monitored, but also due to the constantly changing background and environmental conditions. Yet video systems operating in the visible part of the electromagnetic spectrum have established themselves as one of the most crucial tools in maritime security. However, certain inherent limitations such as requirements of proper scene illumination and failure under low visibility weather conditions like fog could be overcome utilizing different spectral regions. Thermal imaging systems present themselves as a good alternative in maritime security. They could overcome these problems and allow for additional detection of local variation of water temperature, yet have been rarely used efficiently in maritime environment evaluated. Here we present a first order study of the advantage of using long-wavelength infrared (LWIR) imaging for diver detection.;Within these tasks we study the reasons and effects of bubbles on water surface in laboratory IR imaging study and have determined the changes in infrared emissivity and reflectivity due to the corresponding surface manifestation. This was compared and used to analyze experiments in the Hudson Estuary to the real-world applicability of infrared technology in maritime security application. Utilizing a LWIR camera, we limit ourselves on the detection of the scuba diver as well as the determination of its depth---information normally not obtainable in very low visibility water like the Hudson River. For this purpose we observed the thermal surface signature of the diver and obtained and analyzed its temporal behavior with respect to area, perimeter and infrared brightness. Additional qualitative and quantitative analyses of the area and perimeter growth show different behaviors with more or less pronounced correlation to the diver's depth---yet clearly showing a trend allowing for estimation of the diver's depth based on the IR surface manifestation. To reduce the impact of measurement and data processing errors in this natural very noisy environment, a computer based analysis process was developed and optimized for this very specific application. Based on its assessment previous contradictions in the bubble growth could be resolved.
机译:通过基于视频的系统来增强海上安全是一项非常具有挑战性的任务,这不仅是由于要监控的船舶规模不同,而且还因为背景和环境条件不断变化。然而,在电磁频谱的可见光部分运行的视频系统已确立其自身在海上安全中最关键的工具之一的地位。但是,可以利用不同的光谱区域来克服某些固有的局限性,例如适当的场景照明要求以及在低能见度的天气条件(例如雾)下的故障。热成像系统本身可以作为海上安全的替代选择。它们可以克服这些问题,并允许对水温的局部变化进行附加检测,但很少在评估的海洋环境中有效使用。在这里,我们对使用长波红外(LWIR)成像进行潜水员检测的优势进行一阶研究;在这些任务中,我们研究了实验室红外成像研究中气泡对水面的原因和影响,并确定了变化。红外辐射率和反射率归因于相应的表面表现。对此进行了比较,并用于分析哈德逊河口中的实验对红外技术在海上安全应用中的实际应用性。利用LWIR摄像机,我们将精力集中在对潜水员的检测以及对潜水员深度的确定上,而这些信息通常是在像哈德逊河这样的低能见度水中无法获得的。为此,我们观察了潜水员的热表面特征并获得并分析了其相对于面积,周长和红外亮度的时间行为。对面积和周长的其他定性和定量分析表明,不同的行为与潜水员的深度或多或少具有明显的相关性-但很明显地显示出一种趋势,可以根据红外表面表现来估算潜水员的深度。为了减少在这种自然嘈杂的环境中测量和数据处理错误的影响,针对这种非常特定的应用开发了基于计算机的分析过程并对其进行了优化。根据其评估,可以解决泡沫增长中的先前矛盾。

著录项

  • 作者

    Zeng, Debing.;

  • 作者单位

    Stevens Institute of Technology.;

  • 授予单位 Stevens Institute of Technology.;
  • 学科 Engineering Marine and Ocean.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:11

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