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A Novel Baseline Measuring System Based on Femtosecond Comb Laser and High-Resolution Camera

机译:飞秒梳状激光和高分辨率相机的新型基线测量系统

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Precise baseline measurement plays an essential role in interferometric SAR (InSAR) mission. In order to obtain high-accuracy of land elevation, baseline measurement system with high precision is currently required at large inter-antenna distance. In recent years, baseline estimation method and GPS-based measurement system have made some progress in practical applications. However, such two measurement schemes are highly dependent on massive ground post-processing techniques, which prevent from real-time implementation. As a promising alternative, laser and camera measurement system has drawn widespread attention for InSAR utilization nowadays. In this paper, by incorporating a femtosecond comb laser into the laser-camera system, we propose a novel framework for baseline measurement, which could realize high-accuracy observation in real time. After calibrating the laser and camera compartments simultaneously, we validate the performance of the proposed system using a laser tracker as a reference equipment on a hyper-stable platform. The experimental results have shown that the errors of position and attitude are less than 0.2 mm and 15 arcseconds at 60 m distance respectively, which have demonstrated the sub-millimeter precision, long-range and high-speed capabilities of our system.
机译:精确的基线测量在干涉SAR(InSAR)任务中起着至关重要的作用。为了获得高精度的土地标高,目前需要在较大的天线间距离处使用高精度的基线测量系统。近年来,基线估计方法和基于GPS的测量系统在实际应用中取得了一些进展。然而,这两种测量方案高度依赖于大规模的地面后处理技术,这阻碍了实时实施。作为一种有前途的替代方案,激光和照相机测量系统已引起当今InSAR应用的广泛关注。在本文中,通过将飞秒梳状激光器集成到激光照相机系统中,我们提出了一种用于基线测量的新颖框架,该框架可以实现实时高精度观察。在同时校准了激光和相机舱之后,我们使用激光跟踪器作为超稳定平台上的参考设备,验证了所提出系统的性能。实验结果表明,在60 m距离处的位置和姿态误差分别小于0.2 mm和15弧秒,这证明了我们系统的亚毫米精度,远距离和高速能力。

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