为收集航空障碍物数据,提高装有单频接收器的无人机定位精度的方法

IF 0.4 Q4 TRANSPORTATION SCIENCE & TECHNOLOGY Scientific Journal of Silesian University of Technology-Series Transport Pub Date : 2023-06-01 DOI:10.20858/sjsutst.2023.119.5
Marta Lalak, K. Krasuski, D. Wierzbicki
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引用次数: 0

摘要

低空摄影测量研究经常应用于航空障碍物的探测。无人机飞行的低空保证了所获得数据的高空间分辨率(X,Y)。同时,由于高时间分辨率,无人机已成为收集此类障碍物数据的合适工具。为了确保摄影测量块的定向精度,测量地面控制点(GCP)。最近推出的基于后处理运动学(PPK)和实时运动学(RTK)的无人机定位解决方案可以有效地减少,或者根据其他来源,甚至完全消除进行GCP测量的必要性。然而,RTK方法涉及多个限制,这些限制是由于需要确保参考站和漫游者接收器之间的连续通信。主要挑战在于实现区块的精确定向,而无需进行耗时的地面测量,这些测量与GCP的信号发送和测量有关。如果将SPP编码方法用于指定无人机的位置,则需要这样的解决方案。本文提出了一个研究实验,旨在提高SPP方法实时确定无人机坐标的准确性。使用IGS产品对SPP方法的算法进行了改进。
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METHODOLOGY TO IMPROVE THE ACCURACY OF DETERMINING THE POSITION OF UAVS EQUIPPED WITH SINGLE-FREQUENCY RECEIVERS FOR THE PURPOSES OF GATHERING DATA ON AVIATION OBSTACLES
Low-altitude photogrammetric studies are often applied in detection of aviation obstacles. The low altitude of the Unmanned Aerial Vehicle (UAV) flight guarantees high spatial resolution (X, Y) of the obtained data. At the same time, due to high temporal resolution, UAVs have become an appropriate tool for gathering data about such obstacles. In order to ensure the required accuracy of orientation of the photogrammetric block, Ground Control Points (GCPs) are measured. The recently introduced UAV positioning solutions that are based on Post-Processing Kinematic (PPK) and Real Time Kinematic (RTK) are known to effectively reduce, or, according to other sources, even completely eliminate the necessity to conduct GCP measurements. However, the RTK method involves multiple limitations that result from the need to ensure continuous communication between the reference station and the rover receiver. The main challenge lies in achieving accurate orientation of the block without the need to conduct time-consuming ground measurements that are connected to signalling and measuring the GCPs. Such solution is required if the SPP code method is applied to designation the position of the UAV. The paper presents a research experiment aimed at improving the accuracy of the determination of the coordinates of UAV for the SPP method, in real time. The algorithm of the SPP method was improved with the use of IGS products.
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CiteScore
1.20
自引率
0.00%
发文量
52
审稿时长
20 weeks
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