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首页> 外文期刊>Radiophysics and quantum electronics >PRINCIPLES OF DESIGNING AN “IDEAL” SYSTEM OF IMAGING THROUGH A ROUGH WATER SURFACE
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PRINCIPLES OF DESIGNING AN “IDEAL” SYSTEM OF IMAGING THROUGH A ROUGH WATER SURFACE

机译:设计通过粗糙水面成像的“理想”系统的原理

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We propose new principles for designing a system of imaging through a rough water surface. These principles permit one to reduce the negative impact of the surface roughness and multiple scattering in water on the spatial resolution. The system model in which the image of underwater objects is generated by angular scanning with an illumination beam is considered. Image distortions in such a system are due mainly to random variations in the refraction angle of a laser beam on the surface and can be eliminated if the true direction of entry of the beam into water is known. Information on the beam refraction angle is suggested to be taken from the angular distribution of the radiance of the signal backscattered by the subsurface water layer. Reduced impact of multiple scattering in water is reached by high-frequency modulation of the beam power by a complex signal and matched processing in the reception system. It is shown that a combination of proposed imaging techniques gives an essential gain in the resolution of the airborne imaging system.
机译:我们提出了设计通过粗糙水面成像系统的新原理。这些原理允许减少表面粗糙度和水中多次散射对空间分辨率的负面影响。考虑通过使用照明束进行角度扫描来生成水下物体的图像的系统模型。在这样的系统中,图像畸变主要是由于激光束在表面上的折射角的随机变化引起的,并且如果已知光束进入水中的真实方向可以消除。建议从地下水层反向散射的信号辐射的角度分布中获取有关光束折射角的信息。通过复杂信号对光束功率的高频调制以及接收系统中的匹配处理,可以减少水中多重散射的影响。结果表明,所提出的成像技术的组合在机载成像系统的分辨率方面获得了实质性的收益。

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