在狭窄街道立面的措施中实施智能手机摄像头

Q4 Earth and Planetary Sciences
M. Aldelgawy
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引用次数: 0

摘要

本文旨在使用智能手机相机捕获的单个图像对狭窄的街道进行度量测量。由于狭窄的区域和狭窄的街道限制了目标与相机的距离,垂直于街面的目标线不会出现在图像中,因此它们的消失点(VP)难以检测。因此,仅依靠两个正交的vp就设计了半自动MATLAB®应用程序。这项工作的新颖性来自于使用智能手机作为成本和时间效率高的测量工具,仅依赖于两个副ps,并利用检测到的副ps应用图像线细化方法。三个不同的智能手机拍摄了三个单一的图像。然后对摄像机进行标定,形成未失真的单幅图像。对水平和垂直目标的图像线进行了半自动提取。采用两种模型检测两个vp:模型i求解消失点的笛卡尔坐标,模型ii求解直方图的角坐标峰。首先采用图像线细化方法,然后应用交叉比,分别使用一条水平和一条垂直参考线计算46条检查线(水平和垂直)的目标长度。所提出的模型提供了可靠和可比较的结果。采用线精化方法,模型i和模型ii的整体精度分别达到0.010 m和0.011 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IMPLEMENTATION OF THE SMARTPHONE CAMERA IN THE MEASURES OF NARROW STREET FACADES
This paper aims to perform metric measurements of narrow street façades using single image captured by smartphone’s camera. Since tight area accompanied by narrow street limits object to camera distance, object lines perpendicular to façade do not appear in image and consequently their vanishing point (VP) is hard to detect. Accordingly, semi-automated MATLAB® application was designed depending only on two orthogonal VPs. Novelty of work comes from using smartphone as a cost and time efficient tool for measurements, depending only on two VPs, and applying image line refinement approach exploiting detected VPs. Three single images were captured by three different smartphones. Then, undistorted single images were formed after calibrating cameras. Image lines for horizontal and vertical object lines were extracted semi-automatically. Two VPs were detected applying two models: Model-I solves for vanishing points’ Cartesian coordinates, whereas Model-II solves for angle coordinate peaks of histogram. Image line refinement approach was applied before applying cross-ratio using one horizontal and one vertical reference lines to calculate object lengths of 46 check lines (horizontal and vertical). Proposed models provided reliable and comparable results. Applying line refinement approach improved solution with best overall accuracy of 0.010 m and 0.011 m for Model-I and Model-II, respectively.
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来源期刊
Geodeziya i Kartografiya
Geodeziya i Kartografiya Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
0.60
自引率
0.00%
发文量
73
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