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Directly Georeferenced Ground Feature Points with UAV Borne Photogrammetric Platform Without Ground Control

机译:直接地理参考地面特征点与无人机传播摄影测量平台没有地控制

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In order to facilitate applications such as environment detection or disaster monitoring, developing a quickly and low cost system to collect near real time spatial information is very important. Such a rapid spatial information collection capability has become an emerging trend in the technology of remote sensing and mapping application. In this study, a fixed-wing UAV based spatial information acquisition platform is developed and evaluated. The proposed UAV based platform has a direct georeferencing module including an low cost INS/GPS integrated system, low cost digital camera as well as other general UAV modules including immediately video monitoring communication system. This direct georeferencing module is able to provide differential GPS processing with single frequency carrier phase measurements to obtain sufficient positioning accuracy. All those necessary calibration procedures including interior orientation parameters, the lever arm and boresight angle are implemented. In addition, a flight test is performed to verify the positioning accuracy in direct georeferencing mode without using any ground control point that is required for most of current UAV based photogrammetric platforms. In other word, this is one of the pilot studies concerning direct georeferenced based UAV photogrammetric platform. The preliminary results in term of positioning accuracy in direct georeferenced mode without using any GCP illustrate horizontal positioning accuracies in x and y axes are both less than 20 meters, respectively. On the contrary, the positioning accuracy of z axis is less than 50 meters with 600 meters flight height above ground. Such accuracy is good for near real time disaster relief. Therefore, it is a relatively safe and cheap platform to collect critical spatial information for urgent response such as disaster relief and assessment applications where ground control points are not available.
机译:为了促进环境检测或灾害监测等应用,开发快速和低成本的系统,以收集近实时空间信息非常重要。这种快速的空间信息收集能力已成为遥感和映射应用技术的新兴趋势。在这项研究中,开发和评估了基于固定翼的空间信息采集平台。所提出的基于UV的平台具有直接地地理转移模块,包括低成本INS / GPS集成系统,低成本数码相机以及其他通用UAV模块,包括立即视频监控通信系统。该直接地理频率模块能够提供具有单频载波相位测量的差分GPS处理,以获得足够的定位精度。实现了包括内部方向参数,杠杆臂和触角的所有必要校准程序。此外,执行飞行测试以验证直接地理偏移模式中的定位精度,而无需使用大多数基于UAV的摄影平台所需的任何地面控制点。换句话说,这是关于基于直接地理学的UAV摄影测量平台的试点研究之一。在不使用任何GCP的直接地地理位置模式下定位精度的初步结果在不使用任何GCP中示出了X和Y轴的水平定位精度分别小于20米。相反,Z轴的定位精度小于50米,在地上600米的飞行高度。这种准确性有利于近实时救灾。因此,它是一个相对安全和廉价的平台,用于收集紧急响应的临界空间信息,例如接地控制点的灾难释放和评估应用。

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