Optimising UAV Data Acquisition and Processing for Photogrammetry: A Review

Q3 Social Sciences
K. Pargieła
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引用次数: 0

Abstract

Unmanned aerial vehicles (UAVs) are used to acquire measurement data for an increasing number of applications. Photogrammetric studies based on UAV data, thanks to the significant development of computer vision techniques, photogrammetry, and equipment miniaturization, allow sufficient accuracy for many engineering and non-engineering applications to be achieved. In addition to accuracy, development time and cost of data acquisition and processing are also important issues. The aim of this paper is to present potential limitations in the use of UAVs to acquire measurement data and to present measurement and processing techniques affecting the optimisation of work both in terms of accuracy and economy. Issues related to the type of drones used (multi-rotor, fixed-wing), type of shutter in the camera (rolling shutter, global shutter ), camera calibration method (pre-calibration, self-calibration), georeferencing method (direct, indirect), technique of measuring the external images orientation parameters (RTK, PPK, PPP), flight design methods and the type of software used were analysed.
优化无人机摄影测量数据采集和处理:综述
无人驾驶飞行器(uav)用于获取越来越多的测量数据。基于无人机数据的摄影测量研究,由于计算机视觉技术、摄影测量和设备小型化的显著发展,允许实现许多工程和非工程应用的足够精度。除了准确性之外,数据采集和处理的开发时间和成本也是重要的问题。本文的目的是提出在使用无人机获取测量数据的潜在限制,并提出在准确性和经济性方面影响工作优化的测量和处理技术。分析了使用的无人机类型(多旋翼、固定翼)、相机快门类型(卷帘式快门、全局快门)、相机校准方法(预校准、自校准)、地理参考方法(直接、间接)、外部图像定向参数测量技术(RTK、PPK、PPP)、飞行设计方法和使用的软件类型等问题。
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
Geomatics and Environmental Engineering
Geomatics and Environmental Engineering Earth and Planetary Sciences-Computers in Earth Sciences
CiteScore
2.30
自引率
0.00%
发文量
27
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