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Evaluation of grapevine trunk size by use of a handheld camera and three-dimensional modelling

机译:使用手持摄像机和三维建模来评估葡萄树干的大小

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Background and aims: Measurement of grapevine size is necessary to assess carbon reserves at the level of individual vines and to estimate the carbon sequestration potential of vineyards. Methods of measurement rely mostly on traditional dendrological techniques that may be prone to error. In this study, we examined the use of structure-from-motion with multiview stereophotogrammetry (SfM-MVS) to obtain accurate measurements of vine trunk thickness and volume. SfM-MVS enables the creation of scaled, georeferenced three-dimensional models based on a set of overlapping photographs. Methods and results: The study was conducted using field-grown Vitis vinifera L. cv. Riesling vines aged 5, 22 and 46?years and pruned in a bilateral Guyot. Trunk diameter, cross-sectional area and circumference 10?cm above the grafting point were measured by traditional dendrometry, and the values obtained compared with corresponding estimates from reconstructed three-dimensional SfM-MVS models. SfM-MVS was also used to estimate total trunk volume. Correlation between measured values and modelled estimates was close to unity (0.976 ≤ R ~(2) ≤ 0.988). The estimates for 5-year-old vines had the largest errors. Conclusions: Under adequate lighting conditions and with sufficient image resolution, SfM-MVS is able to produce accurate models of vine trunks. Significance of the study: This work serves as proof of concept for the use of SfM-MVS to measure the trunk size of field-grown grapevines of different ages. This technique, which is relatively new, is cost-effective and easy to implement. Further research is necessary to determine specific applications of SfM-MVS, in which it could supplement or replace traditional dendrological techniques.
机译:背景和目标:葡萄大小的测量对于评估单个葡萄水平的碳储量和估算葡萄园的碳固存潜力是必要的。测量方法主要依赖于可能容易出错的传统牙科学技术。在这项研究中,我们检查了运动从动结构与多视图立体摄影测量法(SfM-MVS)的使用,以获取对葡萄树干厚度和体积的准确测量。 SfM-MVS能够基于一组重叠的照片创建缩放的,地理参考的三维模型。方法和结果:该研究是使用田间生长的葡萄(Vitis vinifera L. cv)进行的。 5、22和46岁的雷司令葡萄藤在双边的Guyot中修剪。树干直径,横截面积和接枝点以上10?cm的周长通过传统的测树法进行测量,并将所得值与重建的三维SfM-MVS模型的相应估计值进行比较。 SfM-MVS还用于估计总行李箱容积。测量值与模型估计值之间的相关性接近统一(0.976≤R〜(2)≤0.988)。 5岁葡萄藤的估计误差最大。结论:在足够的照明条件下,并具有足够的图像分辨率,SfM-MVS能够产生准确的葡萄树干模型。研究的意义:这项工作为使用SfM-MVS测量不同年龄田间葡萄树的树干尺寸提供了概念证明。该技术是相对较新的,具有成本效益并且易于实施。为了确定SfM-MVS的特定应用,需要进一步的研究,以补充或替代传统的树状技术。

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