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Precise satellite-ground baseline determination

机译:精确的卫星地面基线确定

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In order to calibrate the measurement error (range error, velocity error and angle error) of spaceflight telemetry, tracking and commanding (TT&C) systems, double-difference GPS system between the calibration satellite and the ground station is established and precise satellite-ground baseline solution is used as the comparative reference of the TT&C measurement. An extended Kalman filter (EKF) modeling the satellite-ground relative dynamics has been developed and a fixed-interval smoother is adopted to smooth the baseline solution of EKF forward and backward filters. Meanwhile, double-difference GPS carrier phase ambiguity is fixed by a cascading integer resolution method. To test and validate the precise baseline determination algorithm, a hardware-in-the-loop simulation platform is constructed with independently developed spaceborne dual-frequency GPS receivers and a SPIRENT GPS signal generator. The simulation results show that with the fixed-interval smoother, the baseline accuracy (rms, single axis) of better than 10cm is achieved. The precise baseline solution can be used to calibrate the TT&C measurement error.
机译:为了校准航天遥测,跟踪和指挥(TT&C)系统的测量误差(范围误差,速度误差和角度误差),建立了校准卫星和地面站之间的双差GPS系统,并确定了精确的卫星地面基准线溶液用作TT&C测量的比较参考。已经开发了一种模拟卫星-地面相对动力学的扩展卡尔曼滤波器(EKF),并采用了固定间隔平滑器来平滑EKF前向和后向滤波器的基线解。同时,通过级联整数分辨率方法来固定双差GPS载波相位模糊度。为了测试和验证精确的基线确定算法,构建了一个硬件在环仿真平台,其中包含独立开发的星载双频GPS接收机和SPIRENT GPS信号发生器。仿真结果表明,使用固定间隔的平滑器,可以实现优于10cm的基线精度(均方根,单轴)。精确的基准线解决方案可用于校准TT&C测量误差。

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