Nitti Davide O, Bovenga Fabio, Chiaradia Maria T, Greco Mario, Pinelli Gianpaolo
Geophysical Applications Processing s.r.l., Via Amendola 173, 70126 Bari, Italy.
National Research Council of Italy, ISSIA institute, Via Amendola 173, 70126 Bari, Italy.
Sensors (Basel). 2015 Jul 28;15(8):18334-59. doi: 10.3390/s150818334.
This study explores the potential of Synthetic Aperture Radar (SAR) to aid Unmanned Aerial Vehicle (UAV) navigation when Inertial Navigation System (INS) measurements are not accurate enough to eliminate drifts from a planned trajectory. This problem can affect medium-altitude long-endurance (MALE) UAV class, which permits heavy and wide payloads (as required by SAR) and flights for thousands of kilometres accumulating large drifts. The basic idea is to infer position and attitude of an aerial platform by inspecting both amplitude and phase of SAR images acquired onboard. For the amplitude-based approach, the system navigation corrections are obtained by matching the actual coordinates of ground landmarks with those automatically extracted from the SAR image. When the use of SAR amplitude is unfeasible, the phase content can be exploited through SAR interferometry by using a reference Digital Terrain Model (DTM). A feasibility analysis was carried out to derive system requirements by exploring both radiometric and geometric parameters of the acquisition setting. We showed that MALE UAV, specific commercial navigation sensors and SAR systems, typical landmark position accuracy and classes, and available DTMs lead to estimated UAV coordinates with errors bounded within ±12 m, thus making feasible the proposed SAR-based backup system.
本研究探讨了在惯性导航系统(INS)测量精度不足以消除计划轨迹漂移时,合成孔径雷达(SAR)辅助无人机(UAV)导航的潜力。这个问题会影响中空长航时(MALE)无人机类别,这类无人机允许搭载重型和大型载荷(如SAR所要求的),并且飞行数千公里会积累大量漂移。基本思路是通过检查机载获取的SAR图像的幅度和相位来推断空中平台的位置和姿态。对于基于幅度的方法,通过将地面地标实际坐标与从SAR图像中自动提取的坐标进行匹配来获得系统导航校正。当使用SAR幅度不可行时,可以通过使用参考数字地形模型(DTM),利用SAR干涉测量法来利用相位内容。通过探索采集设置的辐射和几何参数,进行了可行性分析以得出系统要求。我们表明,中空长航时无人机、特定的商用导航传感器和SAR系统、典型地标位置精度和类别以及可用的数字地形模型,导致估计的无人机坐标误差限制在±12米以内,从而使所提出的基于SAR的备份系统可行。