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Image blurring of narrow laser beam transfer in ocean and throw wavy sea surface

机译:窄激光束转移在海洋中的图像模糊,掷波浪海面

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In the detection of underwater object by air-born lidar, a narrow laser beam reflected by the sea bottom or the underwater target transfers in the ocean and refracted through the wavy sea surface, then received by the receiver carried by plane over the sea surface. Because of the scattering by the suspended particles and the effect of the wavy sea surface, the received signal will to some extent blurred, which will greatly decrease the image quality of the lidar system. Computer simulation by Monte Carlo method was employed to describe the process of narrow laser beam transferring in the ocean and refracted by the wavy sea surface. As the result, the intensity distribution on the receiver can be got as well as the property of image blurring after transferred thought the ocean water and refracted through the wavy sea surface. The relations between this property and the optical property of seawater, the wind speed above the sea surface were analyzed.
机译:在通过空气出生的LIDAR检测水下物体中,由海底反射的窄激光束或海洋中的水下靶转移并通过波浪海表面折射,然后由乘坐海面上的平面承载的接收器接收。 由于悬浮颗粒的散射和波浪海面的效果,所接收的信号将在一定程度上模糊,这将大大降低激光雷达系统的图像质量。 通过Monte Carlo方法进行计算机模拟,描述了在海洋中传递的窄激光束和波浪海表面折射的过程。 结果,接收器上的强度分布可以得到,并且在转移以思想海水和波浪海面折射后图像模糊的性质。 分析了海水,海面上方的风速与海水的关系。

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