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Image Analysis of Measuring Building Configuration for Seismic Damage Estimation

机译:用于估计地震破坏的建筑结构测量的图像分析

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A novel methodology of image analysis was designed to assess more quantitative seismic damage estimation at the building level for a city area in which 10-30% of the entire building stock was damaged. The methodology is capable of accurate configuration determination, which forms the kernel part toward seismic damage estimation based on displacement detection. This provides the following advantages. (1) A narrow stripe is extracted around an approximate building configuration in a virtual image generated based on high-resolution geographical information system (GIS) data. Analysis of building edges incorporated by the narrow stripe reduces computation cost and helps better distinguish building edges from background edges, such as trees, shadows, and windows. (2) An edge detection technique combined with a cumulative Gaussian distribution method and a gradient descent searching algorithm is validated. It offers subpixel location accuracy of a configured structure in a two-dimensional (2D) digital image. (3) Given the approximate position, orientation, resolution, view angle, screen distance, and upward pointing vector in the camera coordinate system, a three-dimensional (3D) wireframe city can be presented pre- and postearthquake.
机译:设计了一种新颖的图像分析方法,以评估整个建筑物的10-30%受损的城市区域在建筑物级别的定量地震破坏估算。该方法能够精确地确定构造,这构成了基于位移检测的地震破坏估计的核心部分。这提供了以下优点。 (1)在基于高分辨率地理信息系统(GIS)数据生成的虚拟图像中,围绕近似建筑物构型提取一条窄条。窄条合并的建筑物边缘的分析减少了计算成本,并有助于更好地将建筑物边缘与背景边缘(例如树木,阴影和窗户)区分开。 (2)验证了结合高斯累积分布方法和梯度下降搜索算法的边缘检测技术。它提供了二维(2D)数字图像中已配置结构的子像素定位精度。 (3)给定摄像机坐标系中的近似位置,方向,分辨率,视角,屏幕距离和向上指向向量,可以在地震前后显示三维(3D)线框城市。

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