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设计用于葡萄园应用的近端传感相机采集系统:八年实验的结果与反馈

Designing a Proximal Sensing Camera Acquisition System for Vineyard Applications: Results and Feedback on 8 Years of Experiments.

作者信息

Rançon Florian, Keresztes Barna, Deshayes Aymeric, Tardif Malo, Abdelghafour Florent, Fontaine Gael, Da Costa Jean-Pierre, Germain Christian

机构信息

IMS Laboratory, CNRS UMR 5218, University of Bordeaux, Talence Campus, F-33400 Talence, France.

Bordeaux Sciences Agro, F-33175 Gradignan, France.

出版信息

Sensors (Basel). 2023 Jan 11;23(2):847. doi: 10.3390/s23020847.

Abstract

The potential of image proximal sensing for agricultural applications has been a prolific scientific subject in the recent literature. Its main appeal lies in the sensing of precise information about plant status, which is either harder or impossible to extract from lower-resolution downward-looking image sensors such as satellite or drone imagery. Yet, many theoretical and practical problems arise when dealing with proximal sensing, especially on perennial crops such as vineyards. Indeed, vineyards exhibit challenging physical obstacles and many degrees of variability in their layout. In this paper, we present the design of a mobile camera suited to vineyards and harsh experimental conditions, as well as the results and assessments of 8 years' worth of studies using that camera. These projects ranged from in-field yield estimation (berry counting) to disease detection, providing new insights on typical viticulture problems that could also be generalized to orchard crops. Different recommendations are then provided using small case studies, such as the difficulties related to framing plots with different structures or the mounting of the sensor on a moving vehicle. While results stress the obvious importance and strong benefits of a thorough experimental design, they also indicate some inescapable pitfalls, illustrating the need for more robust image analysis algorithms and better databases. We believe sharing that experience with the scientific community can only benefit the future development of these innovative approaches.

摘要

图像近端传感在农业应用中的潜力已成为近期文献中一个丰富的科学主题。其主要吸引力在于能够感知有关植物状态的精确信息,而从卫星或无人机图像等分辨率较低的俯视图像传感器中提取这些信息则更加困难或根本无法实现。然而,在处理近端传感时会出现许多理论和实际问题,尤其是在葡萄园等多年生作物上。事实上,葡萄园存在具有挑战性的物理障碍,其布局也存在很大程度的变异性。在本文中,我们介绍了一款适用于葡萄园和恶劣实验条件的移动相机的设计,以及使用该相机进行的长达8年研究的结果和评估。这些项目涵盖了从田间产量估计(浆果计数)到疾病检测等方面,为典型的葡萄栽培问题提供了新的见解,这些见解也可推广到果园作物。然后通过一些小案例研究提供了不同的建议,例如与不同结构地块的取景或传感器在移动车辆上的安装相关的困难。虽然结果强调了全面实验设计的明显重要性和显著益处,但它们也指出了一些不可避免的陷阱,说明了需要更强大的图像分析算法和更好的数据库。我们相信与科学界分享这些经验只会有利于这些创新方法的未来发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96b6/9865571/5f6e3499c272/sensors-23-00847-g001.jpg

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