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A Model-Driven Method for Pylon Reconstruction from Oblique UAV Images

机译:一种模型驱动的无人机倾斜塔重建方法

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摘要

Pylons play an important role in the safe operation of power transmission grids. Directly reconstructing pylons from UAV images is still a great challenge due to problems of weak texture, hollow-carved structure, and self-occlusion. This paper presents an automatic model-driven method for pylon reconstruction from oblique UAV images. The pylons are reconstructed with the aid of the 3D parametric model library, which is represented by connected key points based on symmetry and coplanarity. First, an efficient pylon detection method is applied to detect the pylons in the proposed region, which are obtained by clustering the line segment intersection points. Second, the pylon model library is designed to assist in pylon reconstruction. In the predefined pylon model library, a pylon is divided into two parts: pylon body and pylon head. Before pylon reconstruction, the pylon type is identified by the inner distance shape context (IDSC) algorithm, which matches the shape contours of pylon extracted from UAV images and the projected pylon model. With the a priori shape and coplanar constraint, the line segments on pylon body are matched and the pylon body is modeled by fitting four principle legs and four side planes. Then a Markov Chain Monte Carlo (MCMC) sampler is used to estimate the parameters of the pylon head by computing the maximum probability between the projected model and the extracted line segments in images. Experimental results on several UAV image datasets show that the proposed method is a feasible way of automatically reconstructing the pylon.
机译:塔架在输电网的安全运行中起着重要作用。由于质地薄弱,中空雕刻的结构和自闭塞的问题,从无人机图像直接重建塔架仍然是一个巨大的挑战。本文提出了一种自动模型驱动的方法,用于从倾斜的无人机图像重建塔架。借助3D参数模型库重建塔架,该库由基于对称性和共面性的连接关键点表示。首先,采用一种有效的塔架检测方法来检测建议区域中的塔架,这些塔架是通过将线段相交点聚类而获得的。其次,塔架模型库旨在协助塔架重建。在预定义的塔模型库中,塔分为两部分:塔身和塔头。在重建塔架之前,通过内部距离形状上下文(IDSC)算法识别塔架类型,该算法与从无人机图像中提取的塔架的轮廓轮廓和投影塔架模型相匹配。在先验形状和共面约束下,塔身上的线段匹配,并且通过拟合四个主腿和四个侧面来对塔身进行建模。然后,使用马尔可夫链蒙特卡洛(MCMC)采样器通过计算投影模型与图像中提取的线段之间的最大概率来估计塔头的参数。在几种无人机图像数据集上的实验结果表明,该方法是一种自动重建塔架的可行方法。

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