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Compact, dual-wavelength, non-line-of-sight (NLOS) underwater imager

机译:紧凑型双波长非视线(NLOS)水下成像仪

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High scattering environments, such as fog, sand, and turbid ocean water, severely degrade the performance of typical line-of-sight(LOS)/pseudo-monostatic imaging systems where the laser and receiver are on the same platform. Researchers at NAVAIR have developed a unique non-line-of-sight (NLOS)/bistatic imaging system where the illuminator and receiver are on separate platforms and are linked via wireless optical communication signal that is carried via the target-reflected light. The illuminator is placed close to the target, eliminating a majority of the forward and back scatter that occurs on the way to the target. This system is not hindered by multiple scattering in the path from the object to the receiver which allows it to achieve good image quality through much higher attenuation lengths than typical LOS imaging systems. A compact, dual optical wavelength system has been developed and is currently being tested in a laboratory environment. Results from this testing will be presented and plans for future work will be discussed.
机译:高散射环境(例如雾,沙和浑浊的海水)严重降低了激光和接收器位于同一平台上的典型视距(LOS)/伪单静态成像系统的性能。 NAVAIR的研究人员已经开发了一种独特的非视距(NLOS)/双基地成像系统,其中照明器和接收器位于单独的平台上,并通过通过目标反射光传输的无线光学通信信号进行链接。照明器放置在靠近目标的位置,从而消除了在到达目标的过程中发生的大部分向前和向后散射。该系统不受从物体到接收器的路径中的多次散射的阻碍,这使得它可以通过比典型的LOS成像系统高得多的衰减长度来获得良好的图像质量。已经开发出一种紧凑的双光波长系统,目前正在实验室环境中进行测试。将介绍该测试的结果,并讨论未来的工作计划。

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