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New imaging modalities for laser-based systems

机译:基于激光的系统的新成像方式

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摘要

Laser-based electro-optical sensors can gather spatial information (imagery) as well as a variety of other types of information. These include motion detection (including vibration), color sensing, and sensing of the effects of the illuminated object on the polarization of the incident illumination. Such systems can have several advantages over sensors that rely on reflected or emitted light. Laser-based systems can gather a full 3D image of an object on a single pulse. The sensors can gather this information in a covert manner because of the high directionality of the laser illumination. Also, a laser-based sensor can gather information with high resolution. In addition, the ability to control the illumination source, the receiver, and the optical aperture can lead to new sensing modalities. We describe various spatial and non-spatial sensing concepts and discuss hardware implementations. In particular we highlight the ability of laser-based systems to produce imagery at very low light levels. The utility of low light level imagery in 2D is discussed and the potential benefits of 3D low light level imagery is assessed. The effect of intervening obscurants on low light level systems are considered. Characteristics of systems that can implement such concepts are also described.
机译:基于激光的电光传感器可以收集空间信息(图像)以及各种其他类型的信息。这些包括运动检测(包括振动),颜色感测以及感测被照明物体对入射照明的偏振的影响。与依赖于反射或发射的光的传感器相比,这样的系统可以具有多个优点。基于激光的系统可以在单个脉冲上收集对象的完整3D图像。由于激光照明的高方向性,传感器可以以隐蔽的方式收集此信息。同样,基于激光的传感器可以以高分辨率收集信息。另外,控制照明源,接收器和光学孔径的能力可以导致新的传感方式。我们描述了各种空间和非空间感测概念,并讨论了硬件实现。我们特别强调了基于激光的系统在非常低的光照水平下产生图像的能力。讨论了2D低照度图像的实用性,并评估了3D低照度图像的潜在好处。考虑了遮蔽剂对弱光系统的影响。还描述了可以实现这样的概念的系统的特征。

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