UAV PHOTOGRAMMETRY FOR FEATURE EXTRACTION AND MAPPING OF CORRUGATED INDUSTRIAL ROOFTOPS

Q2 Social Sciences
K. Dayal, I. Chauhan
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引用次数: 2

Abstract

Abstract. Corrugated roof sheets used for large-scale industrial rooftops have the potential to carry solar panels. The sheets, however, need to be surveyed so that the solar panels can be installed according to the measurements of various features. For this purpose, information about exhausts, skylights, corrugation spacing, including extraction of roof slope, which is essential for planning solar panel installations, needs to be measured and mapped. UAV surveying, in contrast to traditional surveying and manual measurements, has proven to be of great benefit in the recent years due to its mobility and low-cost operations and with photogrammetric processing, 3D information with sufficient details can be obtained. In this study, we explored the use of UAV platforms for extraction of fine features (corrugations) of industrial rooftops. The point cloud obtained after photogrammetric processing contained significant geometric information about the corrugation, along with noise. The point cloud was processed to remove noise. Smoothing and exaggeration in the Z-direction, without altering X and Y coordinates, ensured a smooth profile with pronounced peaks at the location of corrugations. Cross-sectional profiles were extracted as a vector and peaks in the profile indicated presence of the corrugation. A peak identification algorithm was used to extract local maxima with corresponding distances along the profile. The peak points were plotted on the ortho-image, and the mean distance between subsequent peaks was approximately 20.3 cm with a standard deviation of 1–2 cm. The spacing between the corrugations was approximately 20 cm when measured manually.
用于波纹工业屋顶特征提取和测绘的无人机摄影测量
摘要用于大型工业屋顶的波纹屋顶板具有承载太阳能电池板的潜力。然而,需要对这些薄板进行测量,以便根据各种特征的测量结果安装太阳能电池板。为此,需要测量和绘制有关排气口、天窗、波纹间距的信息,包括屋顶坡度的提取,这对规划太阳能电池板安装至关重要。与传统的测量和手动测量相比,无人机测量由于其机动性和低成本的操作,近年来已被证明具有巨大的效益,并且通过摄影测量处理,可以获得足够详细的3D信息。在这项研究中,我们探索了使用无人机平台提取工业屋顶的精细特征(波纹)。摄影测量处理后获得的点云包含关于波纹的重要几何信息以及噪声。对点云进行了处理以去除噪波。在不改变X和Y坐标的情况下,Z方向上的平滑和夸张确保了波纹位置具有明显峰值的平滑轮廓。提取横截面轮廓作为矢量,并且轮廓中的峰值指示波纹的存在。使用峰值识别算法来提取具有沿着轮廓的相应距离的局部最大值。将峰点绘制在正交图像上,随后的峰之间的平均距离约为20.3 cm,标准偏差为1-2 波纹之间的间距约为20 cm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
949
审稿时长
16 weeks
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