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Measuring the in situ tilt orientation of fish and zooplankton using stereo photogrammetric methods

机译:使用立体声摄影测量方法测量鱼类和浮游动物的原位倾斜方向

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摘要

Acoustic-derived estimates of fish and zooplankton numerical and biomass density rely on knowledge of the sound scattered by an individual, known as target strength (TS). An important, but difficult to measure, factor in determining TS is the tilt orientation of animals in relation to the insonifying acoustic wave. Underwater stereo-camera systems can provide in situ tilt measurements for fish and zooplankton. We describe a protocol to remove the effects of camera pitch and roll from tilt measurements using a low-cost orientation sensor and a mathematical correction. A tank experiment indicated that tilt estimates made with corrected pitch and roll position data improved measurement accuracy as compared to those made with uncorrected position data. This experiment also provided empirical limits on the range of yaw values that allowed for accurate estimation of target tilt and length. We further tested this protocol using an in situ collection of krill stereo images collected in the Gulf of Alaska. Krill tilts calculated with pitch- and roll-corrected position data were an average of 10o different than those collected with uncorrected position data. Our pitch- and roll-correction improved the accuracy of stereo photogrammetric tilt estimation. Extending this method to appropriate spatial and temporal scales could allow for more accurate parametrization of TS models.
机译:鱼类和浮游动物数值和生物质密度的声学衍生估计依赖于由个体散射的声音的知识,称为目标强度(TS)。重要但难以测量,决定TS的因素是与令人难以置信的声波相对于令人难以置信的声波的倾斜取向。水下立体声相机系统可以为鱼类和浮游车提供原位倾斜测量。我们描述了一种协议,用于使用低成本方向传感器和数学校正来消除摄像机间距和卷从倾斜测量的效果。坦克实验表明,与用未校正位置数据制造的那些相比,用校正的俯仰和滚动位置数据进行倾斜估计改善了测量精度。该实验还提供了对允许准确估计目标倾斜和长度的偏航值范围的实证限制。我们进一步使用在阿拉斯加海湾收集的KRILS立体声图像的原位收集来测试本协议。用俯仰和矫正位置数据计算的KRILL倾斜平均值与由未校正位置数据收集的相同的10o。我们的俯仰和卷尺改善了立体声摄影测量倾斜估计的准确性。将该方法扩展到适当的空间和时间尺度可以允许TS模型的更准确的参数化。

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