首页> 外文OA文献 >Pengaruh Variasi Tinggi Terbang Menggunakan Wahana Unmanned Aerial Vehicle (Uav) Quadcopter Dji Phantom 3 Pro pada Pembuatan Peta Orthofoto (Studi Kasus Kampus Universitas Diponegoro)
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Pengaruh Variasi Tinggi Terbang Menggunakan Wahana Unmanned Aerial Vehicle (Uav) Quadcopter Dji Phantom 3 Pro pada Pembuatan Peta Orthofoto (Studi Kasus Kampus Universitas Diponegoro)

机译:Dhan Phantom 3 Pro无人飞行器(UAV)四旋翼飞行器高度变化对Orthofoto地图制作的影响(Diponegoro大学校园案例研究)

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摘要

Nowadays, the development technology is significantly fast in mapping, one of them is evolving the mapping technology using Unmanned Aerial Vehicle (UAV). UAV is technology which emerging use for photogrammetry mapping.This research is held on Diponegoro University about ± 18 hectare. The Sensor which used is digital non metric camera (Sony EXMOR 1/23” 12 Megapixel) and In this reseacrh is given two treatment which is using plane height 80 meters and 100 meters. The processing is using Agisoft Photoscan software. The processing that doing in software which is aligment which process for identify tie points automatically. Camera callibration for determine interior orientation and exterior orientation of camera, determining the control points, making three dimension model, and give the model texture. After the process is done, the next step is observe from two orthophoto which have the different plane height with observe the distant, area, orientation vector, and RMSE which obtained from two orthophoto. From this research obtain that the best accuracy is gotten on plane height 80 meters rather than plane height 100 meters and also from the pix error from plane height 80 meters are amounted 1,52407 pix and plane height 100 meters 2,33035 pix.
机译:如今,开发技术的制图速度非常快,其中之一就是使用无人飞行器(UAV)改进制图技术。无人机是一种用于摄影测量制图的新兴技术。这项研究在狄波尼哥罗大学进行,约±18公顷。所使用的传感器是数字非公制相机(Sony EXMOR 1/23” 12兆像素),在此修复过程中使用了两种处理方式,即使用平面高度80米和100米。处理使用的是Agisoft Photoscan软件。用于自动识别联系点的应聘软件中的处理。摄像机校准用于确定摄像机的内部方向和外部方向,确定控制点,制作三维模型,并给出模型纹理。处理完成后,下一步是从两个具有不同平面高度的正射影像中观察,并观察从两个正射影像获得的距离,面积,方向向量和RMSE。从这项研究中可以得出,在平面高度为80米而不是平面高度为100米的情况下可获得最佳精度,并且从平面高度为80米的像素误差中得出1,52407像素,而平面高度为100米的2,33035像素。

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