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Tuna Nutriment Tracking using Trajectory Mapping in Application to Aquaculture Fish Tank

机译:使用轨迹映射在水产养殖鱼缸中使用轨迹映射跟踪的金枪鱼养分跟踪

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The cost of fish feeding is usually around 40 percent of total production cost. Estimating a state of fishes in a tank and adjusting an amount of nutriments play an important role to manage cost of fish feeding system. Our approach is based on tracking nutriments on videos collected from an active aquaculture fish farm. Tracking approach is applied to acknowledge movement of nutriment to understand more about the fish behavior. Recently, there has been increasing number of researchers focused on developing tracking algorithms to generate more accurate and faster determination of object. Unfortunately, recent studies have shown that efficient and robust tracking of multiple objects with complex relations remain unsolved. Hence, focusing to develop tracking algorithm in aquaculture is more challenging because tracked object has a lot of aquatic variant creatures. By following aforementioned problem, we develop tuna nutriment tracking based on the classical minimum cost problem which consistently performs well in real environment datasets. In evaluation, the proposed method achieved 21.32 pixels and 3.08 pixels for average error distance and standard deviation, respectively. Quantitative evaluation based on the data generated by human annotators shows that the proposed method is valuable for aquaculture fish farm and can be widely applied to real environment datasets.
机译:鱼类饲养的成本通常约为总生产成本的40%。估计坦克中的鱼类和调整营养量的鱼类发挥了重要作用,以管理鱼饲料系统的成本。我们的方法是基于从活性水产养殖鱼类农场收集的视频的跟踪营养。跟踪方法应用于承认营养的运动,以了解更多关于鱼行为的信息。最近,越来越多的研究人员集中于开发跟踪算法,以产生更准确和更快的对象的速度。遗憾的是,最近的研究表明,具有复杂关系的多个对象的有效和鲁棒跟踪仍未解决。因此,专注于在水产养殖中开发跟踪算法更具挑战性,因为追踪对象具有大量水生成的生物。通过遵循上述问题,我们基于经典的最小成本问题开发金枪鱼养分跟踪,这在真实环境数据集中始终如一地执行良好。在评估中,所提出的方法分别实现了21.32像素和3.08像素的平均误差距离和标准偏差。基于人类注释器产生的数据的定量评估表明,该方法对水产养殖鱼类农场有价值,可以广泛应用于真实环境数据集。

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