Yang Jie, Li Ning, Ma Pengbin, Liu Bin
State Key Laboratory of Astronautic Dynamics, Xi'an Satellite Control Center, Xi'an 710043, China.
School of Electrical Engineering, Xi'an University of Technology, Xi'an 710048, China.
Sensors (Basel). 2022 Jul 20;22(14):5421. doi: 10.3390/s22145421.
Accurate radar RCS measurements are critical to the feature recognition of spatial targets. A calibration method for radar RCS measurement errors is proposed for the first time in the context of special target tracking by observing the Luneburg Lens onboard the LEO satellite. The Luneburg Lens has favorable RCS scattering properties for the radar microwave. Thus, the laboratory RCS measurements of the Luneburg Lens, with some fixed incident frequency and with different incident orientations for the radar microwave, will be implemented in order to build a database. The incident orientation for the radar microwave in the satellite body frame will be calculated by taking advantage of the precise orbit parameters, with errors only at the magnitude of several centimeters and within the actual satellite attitude parameters. According to the incident orientation, the referenced RCS measurements can be effectively obtained by the bilinear interpolation in the database. The errors of actual RCS measurements can thus be calibrated by comparing the referenced and the actual RCS measurements. In the RCS measurement experiment, which lasts less than 400 s, the actual RCS measurement errors of the Luneburg Lens are nearly less than 0 dBsm, which indicates that the RCS measurement errors of the spatial targets can be effectively calculated by the proposed calibration method. After the elaborated calibration, the RCS measurements of the spatial targets can be accurately obtained by radar tracking.
精确的雷达雷达散射截面(RCS)测量对于空间目标的特征识别至关重要。在低地球轨道(LEO)卫星上观测鲁内伯格透镜(Luneburg Lens)的特殊目标跟踪背景下,首次提出了一种雷达RCS测量误差的校准方法。鲁内伯格透镜对雷达微波具有良好的RCS散射特性。因此,将对鲁内伯格透镜进行实验室RCS测量,在一些固定入射频率下,针对雷达微波采用不同的入射方向,以建立一个数据库。利用精确的轨道参数计算雷达微波在卫星本体坐标系中的入射方向,误差仅在几厘米量级且在实际卫星姿态参数范围内。根据入射方向,通过在数据库中进行双线性插值可以有效地获得参考RCS测量值。通过比较参考RCS测量值和实际RCS测量值,可以校准实际RCS测量的误差。在持续时间不到400秒的RCS测量实验中,鲁内伯格透镜的实际RCS测量误差几乎小于0 dBsm,这表明所提出的校准方法可以有效地计算空间目标的RCS测量误差。经过详细校准后,通过雷达跟踪可以准确获得空间目标的RCS测量值。