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Review of Automatic Feature Extraction from High-Resolution Optical Sensor Data for UAV-Based Cadastral Mapping

机译:从基于无人机的地籍映射的高分辨率光学传感器数据中自动提取特征的回顾

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Unmanned Aerial Vehicles (UAVs) have emerged as a rapid, low-cost and flexible acquisition system that appears feasible for application in cadastral mapping: high-resolution imagery, acquired using UAVs, enables a new approach for defining property boundaries. However, UAV-derived data are arguably not exploited to its full potential: based on UAV data, cadastral boundaries are visually detected and manually digitized. A workflow that automatically extracts boundary features from UAV data could increase the pace of current mapping procedures. This review introduces a workflow considered applicable for automated boundary delineation from UAV data. This is done by reviewing approaches for feature extraction from various application fields and synthesizing these into a hypothetical generalized cadastral workflow. The workflow consists of preprocessing, image segmentation, line extraction, contour generation and postprocessing. The review lists example methods per workflow step—including a description, trialed implementation, and a list of case studies applying individual methods. Furthermore, accuracy assessment methods are outlined. Advantages and drawbacks of each approach are discussed in terms of their applicability on UAV data. This review can serve as a basis for future work on the implementation of most suitable methods in a UAV-based cadastral mapping workflow.
机译:无人飞行器(UAV)已经成为一种快速,低成本和灵活的采集系统,对于在地籍制图中的应用而言似乎是可行的:使用UAV采集的高分辨率图像为定义属性边界提供了一种新方法。但是,可以说,没有充分利用无人机衍生的数据的潜力:基于无人机数据,可以从视觉上检测地籍边界并手动数字化。自动从无人机数据中提取边界特征的工作流程可能会增加当前制图程序的速度。本文将介绍一种适用于从无人机数据自动划定边界的工作流程。这是通过回顾从各种应用领域中提取特征的方法并将这些方法综合到假设的广义地籍工作流中来完成的。工作流程包括预处理,图像分割,线提取,轮廓生成和后处理。该评论列出了每个工作流程步骤的示例方法-包括说明,试用过的实现以及应用个别方法的案例研究列表。此外,概述了准确性评估方法。根据每种方法在无人机数据上的适用性来讨论其优缺点。该审查可以作为将来在基于无人机的地籍制图工作流程中实施最合适方法的基础。

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