A Relative Rotation between Two Overlapping UAV's Images

M. Tjahjadi, Fransisca Agust
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引用次数: 6

Abstract

In this paper, we study the influence of varying baseline components on the accuracy of a relative rotation between two overlapping aerial images taken form UAV flight. The case is relevant when mosaicking UAV's aerial images by registering each individual image. Geotagged images facilitated by a navigational grade GPS receiver on board inform the camera position when taking pictures. However, these low accuracies of geographical coordinates encoded in an EXIF format are unreliable to depict baseline vector components between subsequent overlapping images. This research investigates these influences on the stability of rotation elements when the vector components are entered into a standard coplanarity condition equation to determine the relative rotation of the stereo images. Assuming a nadir looking camera on board while the UAV platform is flying at a constant height, the resulted vector directions are utilized to constraint the coplanarity equation. A detailed analysis of each variation is given. Our experiments based on real datasets confirm that the relative rotation between two successive overlapping image is practically unaffected by the accuracy of positioning method. Furthermore, the coplanarity constraint is invariant with respect to a translation along the baseline of the aerial stereo images.
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两幅重叠无人机图像的相对旋转
本文研究了不同基线分量对无人机飞行中两幅重叠航拍图像相对旋转精度的影响。该案例适用于对无人机航拍图像进行配准拼接。在拍照时,船上的导航级GPS接收器提供地理标记图像,通知相机位置。然而,这些以EXIF格式编码的低精度的地理坐标在描述后续重叠图像之间的基线矢量分量时是不可靠的。本文研究了将矢量分量引入标准共平面条件方程来确定立体图像的相对旋转时,这些因素对旋转单元稳定性的影响。假设无人机平台在恒定高度飞行时机载有一个最低点摄像头,利用所得矢量方向约束共平面方程。对每一种变化都作了详细的分析。我们在实际数据集上的实验证实,两幅连续重叠图像之间的相对旋转实际上不受定位方法精度的影响。此外,相对于沿基线的航空立体图像的平移,共平面约束是不变的。
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