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Attitude Determination of small satellite using phase and code measurements of Global Navigation Satellite System: Design, simulation and comparison

机译:使用相位和代码测量的全球导航卫星系统的姿态确定小卫星:设计,仿真和比较

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摘要

Attitude Determination (AD) of a Low Earth Orbit (LEO) small satellite using the code and phase measurements of Global Navigation Satellite Systems (GNSS) is explored in this research. The proliferation of satellite based navigation system and the burgeoning application area of small satellites in the field of Earth observation has motivated this research paradigm. This contribution focuses on the design, simulation and comparison of multi-antenna, stand-alone, commercial-off-the-shelf (COTS), GPS-based attitude determination using the code and phase measurements of GPS signals. Master antenna position is obtained by Single Point positioning method using the code observations and ephemeris while differential positioning is applied to find the slave antenna positions. The problem of Ambiguity Resolution (AR) that is crucial while estimating attitude using phase measurements is done by Least-Squares AMBiguity Decorrelation Adjustment (LAMBDA) method. Finally, the attitude is determined using the direct and the least square method. It has been found that phase measurement method is more precise than the code based method and an accuracy of less than one degree in attitude parameters can be obtained using phase measurements.
机译:在本研究中探讨了使用全球导航卫星系统(GNSS)的代码和相位测量的低地球轨道(LEO)小卫星的姿态确定(ZH)。地球观测领域小卫星的卫星导航系统的增殖与小卫星的爆炸应用面积有动力激励了该研究范式。这种贡献侧重于使用GPS信号的代码和相位测量的多天线,独立,商业现成(COTS),基于GPS的姿态确定的设计,仿真和比较。通过使用代码观测和星历的单点定位方法获得主天线位置,而差分定位被应用于找到从天线位置。在使用相位测量估计姿态的同时至关重要的模糊分辨率(AR)的问题由最小二乘歧义去相关调整(Lambda)方法来完成。最后,使用直接和最小二乘法确定姿态。已经发现,相位测量方法比基于码的方法更精确,并且可以使用相位测量获得姿态参数的小于一度的精度。

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