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Estimating reef fish size distributions with a mini remotely operated vehicle-integrated stereo camera system

机译:用迷你远程操作的车辆集成立体声相机系统估算礁鱼尺寸分布

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We tested the efficacy of a stereo camera (SC) system adapted for use with a remotely operated vehicle (ROV) to estimate fish length distributions at reef sites in the northern Gulf of Mexico. A pool experiment was conducted to test the effect of distance (1, 2, 3 or 5 m), angle of incidence (AOI; 0° to 40° at 5° increments), and SC baseline distance (BD; BD1 = 406, BD2 = 610, and BD3 = 762 mm camera separation) on the accuracy and precision of fish model length (288, 552, or 890 mm fork length) estimates compared to a red laser scaler (RLS). A field experiment was then conducted at 20 reef sites with SCs positioned at BD1 to compare fish length distribution estimates between the SC and RLS systems under in situ conditions. In the pool experiment, mean percent errors were consistently within the a priori selected threshold of ±5% at AOIs ≤10° at all distances with all four systems. However, SCs produced accurate estimates at AOIs up to 30° at all distances tested; 2–3 m was optimal. During reef site surveys, SCs collected 10.4 times as many length estimates from 4.3 times as many species compared to the RLS. Study results demonstrate that, compared to laser scalers, ROV-based SC systems can substantially increase the number of available fish length estimates by producing accurate length estimates at a wider range of target orientations while also enabling measurements from a greater portion of the cameras’ field of view.
机译:我们测试了适用于远程操作车辆(ROV)的立体声相机(SC)系统的功效,以估计墨西哥北部礁位的鱼长分布。进行池实验以测试距离(1,2,3或5米),入射角(AOI; 0°以5°增量的距离)的效果,以及SC基线距离(BD; BD1 = 406, BD2 = 610和BD3 = 762毫米相机分离)与红色激光烫模(RLS)相比,鱼模型长度(288,552或890 mm叉长)估计的精度和精度。然后在20个珊瑚礁位点进行现场实验,其中SC位于BD1,在原位条件下比较SC和RLS系统之间的鱼长分布估计。在池实验中,平均百分比误差在所有四个系统的所有距离处在AOIS≤10°处的先验阈值±5%。然而,SCS在所有测试的距离处产生高达30°的AOIS精确估计; 2-3米是最佳的。在Reef网站调查期间,与RLS相比,SCS收集了40.4倍的长度估计值的10.4倍。研究结果表明,与激光缩放器相比,基于ROV的SC系统可以通过在更宽范围的目标方向上产生准确的长度估计来大大增加可用鱼长度估计的数量,同时也能够从相机字段的大部分开始测量看法。

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