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A Method of Obtaining Ice Concentration and Floe Size From Shipboard Oblique Sea Ice Images

机译:一种从舰船斜海冰图像中获取冰浓度和浮游物大小的方法

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摘要

Digital cameras are widely used on research vessels to ascertain ice conditions in ice-infested seas. However, geometric distortion of images cannot be avoided if the camera is tilted relative to the sea surface. In this study, the geometric distortion induced by oblique photography was quantitatively estimated based on photogrammetric theory to enable accurate measurement of sea ice features. One accurate method of calculating the ice concentration and floe size was developed, and a corresponding simplified method was also tested. Proper selection of camera system parameters (camera height, tilt, and focal length) cannot only avoid possible errors induced by geometric distortion but also make full use of the image information. Additionally, oblique sea ice images obtained during the 2006 Winter Weddell Outflow Study were investigated using the methods developed here. The results revealed that the geometric distortion of oblique images could be accurately corrected by analyzing each image pixel and that the simplified method could be applied to ensure the precision and efficiency of calculating ice features.
机译:数码相机广泛用于研究船上,以查明在冰雪覆盖的海洋中的冰况。但是,如果照相机相对于海面倾斜,则无法避免图像的几何变形。在这项研究中,基于摄影测量理论对斜摄影引起的几何变形进行了定量估计,以能够准确测量海冰特征。开发了一种计算冰浓度和浮冰尺寸的精确方法,并测试了相应的简化方法。正确选择相机系统参数(相机高度,倾斜度和焦距)不仅可以避免由于几何畸变引起的可能的错误,而且可以充分利用图像信息。此外,使用此处开发的方法研究了2006年冬季Weddell流量研究期间获得的斜海冰图像。结果表明,通过分析每个图像像素可以准确地校正斜图像的几何畸变,并且可以应用简化方法来确保计算冰特征的精度和效率。

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