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Applications of photogrammetry and 3D modelling techniques for plant/crop high-throughput phenotyping using Small Unmanned Aircraft System (sUAS)

机译:摄影测量法和3D建模技术在使用小型无人机系统(sUAS)进行植物/作物高通量表型分析中的应用

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摘要

Plant/crop phenotyping has been studied for decades for understanding of the relationship between plant/crop genotype, phenotype and environment. Improved accuracy and efficiency in plant/crop phenotyping is a critical factor in expediting plant breeding and selection process. In the past, plant/crop phenotyping information was extracted from human field-based measurements and field notes, which is time-consuming, labor-intensive and cost-inefficient. More importantly, the accuracy of the field-based measurements can be highly variable. Using photogrammetry and 3D modelling techniques to extract plant/crop phenotyping information has been introduced recently, but still no cost-efficient methods using these two techniques has been yet been developed for large-scale plant genotyping studies or large crop field. Increasingly, Small Unmanned Aircraft System (sUAS) are being evaluated as a potential imaging platform for 3D modelling of plants at the leaf and canopy scales. The application of sUAS in agriculture is in its infant stages, but it is believed the temporal and spatial resolutions of these systems are well matched to many crop phenotyping needs Besides crops, similar data sets can be used for 3D modelling of wildland plants which has applications to plant genomic studies and wildlife habitat assessment.In this study, we introduce the method of using affordable imaging system and 3D modelling software – Agisoft PhotoScan Pro to build image orthophotos and 3D plant canopy models. Using sUAS imagery, 3D crop canopy models are derived and plant/crop height extracted, while spectral measurements are used to differentiate crop treatments and genotype.
机译:为了了解植物/作物基因型,表型和环境之间的关系,已经对植物/作物表型进行了数十年的研究。提高植物/作物表型的准确性和效率是加快植物育种和选择过程的关键因素。过去,植物/作物表型信息是从基于人的现场测量和现场记录中提取的,这是费时,费力且成本低廉的。更重要的是,基于现场的测量的准确性可能会高度可变。最近已经引入了使用摄影测量法和3D建模技术来提取植物/作物表型信息的方法,但是对于大规模植物基因分型研究或大作物田地,仍没有开发出使用这两种技术的具有成本效益的方法。小型无人飞机系统(sUAS)越来越多地被评估为潜在的成像平台,用于在叶和冠层尺度上对植物进行3D建模。 sUAS在农业中的应用还处于起步阶段,但据信这些系统的时间和空间分辨率与许多农作物表型需求非常匹配。除农作物外,类似的数据集可用于野外植物的3D建模。本文将介绍使用负担得起的成像系统和3D建模软件Agisoft PhotoScan Pro建立图像正射影像和3D植物冠层模型的方法。使用sUAS图像,可以得出3D作物冠层模型并提取植物/作物的高度,而光谱测量则用于区分作物的处理方式和基因型。

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