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Early Detection System of Harmful Algal Bloom Using Drones and Water Sample Image Recognition

机译:无人机和水样图像识别的有害藻华早期检测系统

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摘要

Food consumption is increasing as the world population increases. While the eating of fish is spreading worldwide, the depletion of fishery resources has become a problem owing to overfishing, and the importance of aquaculture is increasing in order to continue to supply fish as food. In marine aquaculture, fish are grown in aquaculture cages in the sea. Thus, if a harmful algal bloom (HAB) reaches the cages, it will cause serious damage. Countermeasures against HAB are one of the important problems for aquaculture fishermen. In Nagasaki Prefecture in Japan, countermeasures against HAB include patrolling and sampling water by ships. These samples are then submitted to HAB experts for analysis. Following this analysis, notification is provided to aquaculture fishermen. When HAB is detected early, aquaculture fishermen can minimize the damage of HAB by stopping feeding and moving the aquaculture cages. In this study, we developed a system of early detection and notification of HAB to aquaculture fishermen. This is carried out by patrolling and sampling water using drones, detection of HAB by microscope and PC operation, and automatic notification by email and web application. As a result of this developed system, the identification accuracy of harmful plankton is more than 90%, and the time taken to find HABs can be shortened from the 6 h of the conventional approach to 15 min using this newly developed system.
机译:随着世界人口的增加,粮食消费也在增加。尽管鱼的食用正在世界范围内扩散,但由于过度捕捞,渔业资源的枯竭已成为一个问题,水产养殖的重要性日益提高,以便继续以鱼为食。在海水养殖中,鱼是在海水养殖网箱中养殖的。因此,如果有害藻华(HAB)到达网箱,则会造成严重损坏。针对HAB的对策是水产养殖渔民的重要问题之一。在日本长崎县,针对HAB的对策包括通过船只巡逻和取样水。然后将这些样本提交给HAB专家进行分析。经过分析后,将通知水产养殖渔民。如果及早发现HAB,水产养殖渔民可以通过停止喂食和移动水产养殖网箱来最大程度地减少HAB的危害。在这项研究中,我们开发了一种早期检测和通知水产养殖渔民HAB的系统。这可以通过使用无人机巡逻和取样水,通过显微镜和PC操作检测HAB以及通过电子邮件和Web应用程序自动通知来进行。由于采用了这种新开发的系统,有害浮游生物的识别准确率超过90%,发现HAB的时间可以从传统方法的6小时缩短到15分钟。

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