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Real-time kinematic positioning of LEO satellites using a single-frequency GPS receiver

机译:使用单频GPS接收器的Leo卫星的实时运动定位

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摘要

Due to their low cost and low power consumption, single-frequency GPS receivers are considered suitable for low-cost space applications such as small satellite missions. Recently, requirements have emerged for real-time accurate orbit determination at sub-meter level in order to carry out onboard geocoding of high-resolution imagery, open-loop operation of altimeters and radio occultation. This study proposes an improved real-time kinematic positioning method for LEO satellites using single-frequency receivers. The C/A code and L1 phase are combined to eliminate ionospheric effects. The epoch-differenced carrier phase measurements are utilized to acquire receiver position changes which are further used to smooth the absolute positions. A kinematic Kalman filter is developed to implement kinematic orbit determination. Actual flight data from China's small satellite SJ-9A are used to test the navigation performance. Results show that the proposed method outperforms traditional kinematic positioning method in terms of accuracy. A 3D position accuracy of 0.72 and 0.79 m has been achieved using the predicted portion of IGS ultra-rapid products and broadcast ephemerides, respectively.
机译:由于其低成本和低功耗,单频GPS接收器被认为适用于小型卫星任务等低成本空间应用。最近,已经出现了子仪表级的实时精确轨道测定的要求,以便在高分辨率图像,高度计和无线电掩星的开环操作中执行船上地理编码。本研究提出了一种利用单频接收器改进了LEO卫星的实时运动定位方法。 C / A代码和L1相结合以消除电离层效应。跨跨区分的载波相位测量用于获取进一步用于平滑绝对位置的接收器位置改变。开发了一种运动卡尔曼滤波器以实现运动轨道轨道测定。来自中国小型卫星SJ-9A的实际飞行数据用于测试导航性能。结果表明,该方法在准确性方面优于传统的运动定位方法。使用IGS超快速产品的预测部分和广播清醒的3D位置精度分别实现了0.72和0.79米。

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