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使用人工智能摄像头实时检测微塑料。

Real-Time Detection of Microplastics Using an AI Camera.

作者信息

Sarker Md Abdul Baset, Imtiaz Masudul H, Holsen Thomas M, Baki Abul B M

机构信息

Electrical and Computer Engineering, Clarkson University, Potsdam, NY 13699, USA.

Civil and Environmental Engineering, Clarkson University, Potsdam, NY 13699, USA.

出版信息

Sensors (Basel). 2024 Jul 6;24(13):4394. doi: 10.3390/s24134394.

Abstract

Microplastics (MPs, size ≤ 5 mm) have emerged as a significant worldwide concern, threatening marine and freshwater ecosystems, and the lack of MP detection technologies is notable. The main goal of this research is the development of a camera sensor for the detection of MPs and measuring their size and velocity while in motion. This study introduces a novel methodology involving computer vision and artificial intelligence (AI) for the detection of MPs. Three different camera systems, including fixed-focus 2D and autofocus (2D and 3D), were implemented and compared. A YOLOv5-based object detection model was used to detect MPs in the captured image. DeepSORT was then implemented for tracking MPs through consecutive images. In real-time testing in a laboratory flume setting, the precision in MP counting was found to be 97%, and during field testing in a local river, the precision was 96%. This study provides foundational insights into utilizing AI for detecting MPs in different environmental settings, contributing to more effective efforts and strategies for managing and mitigating MP pollution.

摘要

微塑料(MPs,尺寸≤5毫米)已成为全球关注的重大问题,威胁着海洋和淡水生态系统,而且微塑料检测技术的匮乏十分显著。本研究的主要目标是开发一种相机传感器,用于检测微塑料并在其运动时测量其尺寸和速度。本研究引入了一种涉及计算机视觉和人工智能(AI)的新颖方法来检测微塑料。实施并比较了三种不同的相机系统,包括定焦2D和自动对焦(2D和3D)相机系统。使用基于YOLOv5的目标检测模型来检测捕获图像中的微塑料。然后实施DeepSORT以通过连续图像跟踪微塑料。在实验室水槽环境中的实时测试中,发现微塑料计数的精度为97%,而在当地河流的现场测试中,精度为96%。本研究为利用人工智能在不同环境中检测微塑料提供了基础见解,有助于为管理和减轻微塑料污染做出更有效的努力和制定更有效的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ec8/11244247/09a989da5dd2/sensors-24-04394-g001.jpg

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