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A Small-Scale Comparison of Iceland Scallop Size Distributions Obtained from a Camera Based Autonomous Underwater Vehicle and Dredge Survey

机译:从基于摄像头的自动水下航行器和挖泥船调查获得的冰岛扇贝尺寸分布的小规模比较

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摘要

An approach is developed to estimate size of Iceland scallop shells from AUV photos. A small-scale camera based AUV survey of Iceland scallops was conducted at a defined site off West Iceland. Prior to height estimation of the identified shells, the distortions introduced by the vehicle orientation and the camera lens were corrected. The average AUV pitch and roll was and deg that resulted in error in ground distance rendering these effects negligible. A quadratic polynomial model was identified for lens distortion correction. This model successfully predicted a theoretical grid from a frame photographed underwater, representing the inherent lens distortion. The predicted shell heights were scaled for the distance from the bottom at which the photos were taken. This approach was validated by height estimation of scallops of known sizes. An underestimation of approximately cm was seen, which could be attributed to pixel error, where each pixel represented cm. After correcting for this difference the estimated heights ranged from cm. A comparison of the height-distribution from a small-scale dredge survey carried out in the vicinity showed non-overlapping peaks in size distribution, with scallops of a broader size range visible in the AUV survey. Further investigations are necessary to evaluate any underlying bias and to validate how representative these surveys are of the true population. The low resolution images made identification of smaller scallops difficult. Overall, the observations of very few small scallops in both surveys could be attributed to low recruitment levels in the recent years due to the known scallop parasite outbreak in the region.
机译:开发了一种方法,可以根据AUV照片估算冰岛扇贝的壳大小。在冰岛西部附近的特定地点进行了基于小型相机的AUV冰岛扇贝调查。在对识别出的壳体进行高度估计之前,先校正由车辆方向和摄像机镜头引起的变形。平均AUV俯仰和横滚为deg和deg,导致地面距离误差,这些影响可以忽略不计。确定了用于透镜畸变校正的二次多项式模型。该模型成功地从水下拍摄的框架中预测出理论网格,代表了固有的镜头失真。预测的外壳高度按与拍摄照片的底部的距离缩放。该方法已通过已知大小扇贝的高度估计得到验证。可以看到大约低估了cm,这可能归因于像素误差,其中每个像素代表cm。校正此差异后,估计的高度为cm。在附近进行的一次小型挖泥船调查所得到的高度分布比较显示,大小分布没有重叠峰,在AUV调查中可以看到更宽范围的扇贝。有必要进行进一步的调查,以评估任何潜在的偏见,并验证这些调查对真实人群的代表性。低分辨率图像使得难以识别较小的扇贝。总体而言,由于该地区已知的扇贝寄生虫暴发,这两项调查中很少观察到小扇贝,这可归因于近年来的低招募水平。

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