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首页> 外文期刊>Computers and Electronics in Agriculture >Feed spreaders in sea cage aquaculture - Motion characterization and measurement of spatial pellet distribution using an unmanned aerial vehicle
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Feed spreaders in sea cage aquaculture - Motion characterization and measurement of spatial pellet distribution using an unmanned aerial vehicle

机译:海笼水产养殖中的饲料吊具 - 使用无人机车辆的运动表征和空间颗粒分布的测量

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Pneumatic rotary feed spreaders represent essential equipment in the feeding system of present day industrial-scale sea cage aquaculture. This study presents experimentally obtained attitude measurements and corresponding surface distribution patterns of pellets in order to characterize the dynamic behavior and performance of such spreaders. Spreader attitude and direction were measured by employing an attitude and heading reference system along with a rotary encoder. In addition, an unmanned aerial vehicle (UAV) was used to record pellet surface impacts from the air, and the position and direction of the spreader was obtained by applying computer vision methods to the recorded video. The proposed UAV method was fast to deploy, requires minimal equipment installation and presents a viable alternative to the approach of collecting pellets manually using Styrofoam boxes as reported in earlier studies. The findings from this study may be used as a base for further development and refinement with respect to using an UAV to observe the performance and spatial pellet distribution from various feed spreaders used in aquaculture. Such a tool may be valuable for farmers and equipment producers which may easily evaluate the performance of various spreader designs. In addition, the results serve as valuable input for parametrization and validation of mathematical feed spreader models. (C) 2016 Elsevier B.V. All rights reserved.
机译:气动旋转饲料吊具代表现行工业规模海笼水产养殖的饲养系统中的基本设备。该研究提出了实验获得的姿势测量和相应的颗粒表面分布图案,以表征这种吊具的动态行为和性能。通过采用态度和前进的参考系统以及旋转编码器来测量吊具姿态和方向。此外,使用无人驾驶飞行器(UAV)用于记录来自空气的颗粒表面冲击,并且通过将计算机视觉方法应用于记录的视频来获得吊具的位置和方向。所提出的UAV方法快速部署,需要最小的设备安装,并在早期研究中报告的使用聚苯乙烯泡沫盒手动收集颗粒的方法是可行的替代品。本研究的发现可以用作进一步开发和改进的基础,用于使用无人机,观察来自水产养殖中使用的各种饲料展示的性能和空间颗粒分布。这种工具可能对农民和设备生产者来说可能是有价值的,这可能很容易评估各种吊具设计的性能。此外,结果作为数学饲料展台模型的参数化和验证的有价值输入。 (c)2016年Elsevier B.v.保留所有权利。

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