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首页> 外文期刊>International journal of remote sensing >Accurate ortho-mosaicked six-band multispectral UAV images as affected by mission planning for precision agriculture proposes
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Accurate ortho-mosaicked six-band multispectral UAV images as affected by mission planning for precision agriculture proposes

机译:精确的正交畸形六波段多光谱无人机图像受精密农业任务计划的影响

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摘要

Weed mapping at very early phenological stages of crop and weed plants for site-specific weed management can be achieved by using ultra-high spatial and high spectral resolution imagery provided by multispectral sensors on-board an unmanned aerial vehicle (UAV). These UAV images cannot cover the whole field, resulting in the need to take a sequence of multiple overlapped images. Therefore, the overlapped images must be oriented and ortho-rectified to create an accurate ortho-mosaicked image of the entire field for further classification. Because the spatial quality of ortho-mosaicked images mainly depend on the flight altitude and percentage of overlap, this paper describes the effect of flight parameters using a multirotor UAV and a multispectral camera on the mosaicking workflow. The objective is to define the best configuration for the mission planning to generate accurate ortho-images. A set of flights with a range of altitudes (30, 40, 50, 60, 70, 80, and 90 m) above ground level (AGL) and two end-lap and side-lap settings (60-30% and 70-40%) were studied. The spatial accuracy of ortho-mosaics was evaluated taking into consideration the ASPRS test. The results showed that the best flight setting to keep the spatial accuracy in the bundle adjustment was 70-40% overlap and altitudes AGL ranging from 60 to 90 m. At these flight altitudes, the spatial resolution was quite similar, making it possible to optimize the mission planning, flying at a higher altitude and increasing the area overflow without decreasing the ortho-mosaic spatial quality. This study has relevant implications for further use in detecting weed seedlings in crops.
机译:可以通过使用无人机上的多光谱传感器提供的超高空间和高光谱分辨率图像,在作物和杂草植物的物候早期阶段进行杂草制图,以进行特定地点的杂草管理。这些无人机图像无法覆盖整个视野,因此需要拍摄一系列重叠的图像。因此,必须对重叠的图像进行定向和正射校正,以创建整个场的精确正射影像,以进行进一步分类。由于正交镶嵌图像的空间质量主要取决于飞行高度和重叠百分比,因此本文描述了使用多旋翼无人机和多光谱摄像头的飞行参数对镶嵌工作流程的影响。目的是为任务计划定义最佳配置,以生成准确的正射影像。一组高度高于地面(AGL)且高度范围分别为(30、40、50、60、70、80和90 m的航班),并且有两个端部和侧部设置(60-30%和70- 40%)进行了研究。考虑到ASPRS测试,对正交马赛克的空间精度进行了评估。结果表明,在束调整中保持空间精度的最佳飞行设置是70-40%重叠,高度AGL在60至90 m之间。在这些飞行高度上,空间分辨率非常相似,从而可以优化任务计划,在更高的高度飞行并增加区域溢流而不会降低正交马赛克的空间质量。这项研究对于进一步检测农作物杂草幼苗具有重要意义。

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