基于视觉的相对姿态分类辅助无人机定位方法

S. Zhang, Jie Li, Chengwei Yang, Yu Yang, Xiaoling Hu
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引用次数: 2

摘要

无人机(UAV)编队飞行时,常用的通信方式是射频通信。然而,在实际应用中,射频通信的方式容易受到电磁等其他因素的干扰。因此,为了提高无人机集群飞行的抗干扰性,有必要采用一种基于视觉信息的定位方法。基于上述分析,本文提出了一种基于视觉的姿态分类辅助无人机定位方法。首先,利用目标识别方法将求解无人机相对姿态问题转化为分类问题,实现对友方无人机相对姿态的初步分类;基于摄像机标定原理,将目标无人机的像素大小和坐标转换为机体坐标系。由于摄像机与载体无人机是固定连接的,当载体无人机的经纬度坐标已知时,可以进行相对坐标转换,计算目标无人机在世界坐标系中的坐标。实现目标无人机的定位任务。仿真结果表明,该方法的无人机相对姿态识别精度超过90%,距离仿真系统的平均误差为2.56%。在不丢失目标的情况下,最终的坐标定位精度超过90%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vision-based UAV Positioning Method Assisted by Relative Attitude Classification
When the Unmanned Aerial Vehicle(UAV) is flying in formation, the common communication method is radio frequency(RF) communication. However, in practical applications, the way of RF communication is susceptible to interference from other factors such as electromagnetism. Therefore, in order to improve the anti-interference of the UAV cluster flight, it's necessary to use a positioning method which is based on visual information. Based on the above analysis, this paper proposes a vision-based UAV positioning method assisted by attitude classification. Firstly, the problem of solving the relative attitude of the UAV is transformed into a classification problem by the object recognition method, and a preliminary classification of the relative attitude of the friendly UAV is realized. Based on the principle of camera calibration, the pixel size and coordinates of the target UAV can be transform to the body coordinate system. Since the camera and the carrier UAV are fixedly connected, when the latitude and longitude coordinates of the carrier UAV are known, relative coordinate conversion can be performed to calculate the coordinates of the target UAV in the world coordinate system. Realize the positioning task of the target UAV. Simulation results are performed on the proposed method of the UAV relative attitude recognition accuracy exceeds 90%, and the average error in the distance simulation system of 2.56%. The final coordinate positioning accuracy exceeds 90% without losing the target.
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