Yang Jianxing, Zheng Enhui, Fan Jiqi, Yao Yuwen
School of Mechanical and Electrical Engineering, China Jiliang University, Hangzhou 310018, China.
Sensors (Basel). 2024 Aug 24;24(17):5491. doi: 10.3390/s24175491.
Drones traditionally rely on satellite signals for positioning and altitude. However, when in a special denial environment, satellite communication is interrupted, and the traditional positioning and height determination methods face challenges. We made a dataset at the height of 80-200 m and proposed a multi-scale input network. The positioning index RDS achieved 76.3 points, and the positioning accuracy within 20 m was 81.7%. This paper proposes a method to judge the height by image alone, without the support of other sensor data. One height judgment can be made per single image. Based on the UAV image-satellite image matching positioning technology, by calculating the actual area represented by the UAV image in real space, combined with the fixed parameters of the optical camera, the actual height of the UAV flight is calculated, which is 80-200 m, and the relative error rate of height is 18.1%.
传统上,无人机依靠卫星信号进行定位和确定高度。然而,在特殊的信号屏蔽环境中,卫星通信会中断,传统的定位和高度确定方法面临挑战。我们在80至200米的高度制作了一个数据集,并提出了一种多尺度输入网络。定位指标RDS达到了76.3分,20米范围内的定位精度为81.7%。本文提出了一种仅通过图像判断高度的方法,无需其他传感器数据的支持。每单张图像即可进行一次高度判断。基于无人机图像-卫星图像匹配定位技术,通过计算无人机图像在真实空间中所代表的实际面积,结合光学相机的固定参数,计算出无人机飞行的实际高度为80至200米,高度相对误差率为18.1%。