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Performance Analysis of Global Navigation Satellite System Signal Acquisition Aided by Different Grade Inertial Navigation System under Highly Dynamic Conditions

机译:高动态条件下不同等级惯性导航系统辅助的全球导航卫星系统信号采集性能分析

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摘要

Under the high dynamic conditions, Global Navigation Satellite System (GNSS) signals produce great Doppler frequency shifts, which hinders the fast acquisition of signals. Inertial Navigation System (INS)-aided acquisition can improve the acquisition performance, whereas the accuracy of Doppler shift and code phase estimation are mainly determined by the INS precision. The relation between the INS accuracy and Doppler shift estimation error has been derived, while the relation between the INS accuracy and code phase estimation error has not been deduced. In this paper, in order to theoretically analyze the effects of INS errors on the performance of Doppler shift and code phase estimations, the connections between them are re-deduced. Moreover, the curves of the corresponding relations are given for the first time. Then, in order to have a better verification of the INS-aided acquisition, a high dynamic scenario is designed. Furthermore, by using the deduced mathematical relation, the effects of different grade INS on the GNSS (including Global Positioning System (GPS) and BeiDou Navigation Satellite System (BDS)) signal acquisition are analyzed. Experimental results demonstrate that the INS-aided acquisition can reduce the search range of local frequency and code phase, and achieve fast acquisition. According to the experimental results, a suitable INS can be chosen for the deeply coupled integration.
机译:在高动态条件下,全球导航卫星系统(GNSS)信号会产生很大的多普勒频移,从而阻碍了信号的快速采集。惯性导航系统(INS)辅助的采集可以提高采集性能,而多普勒频移和码相位估计的精度主要取决于INS精度。推导了INS精度与多普勒频移估计误差之间的关系,而没有推导INS精度与码相位估计误差之间的关系。在本文中,为了从理论上分析INS误差对多普勒频移和码相位估计性能的影响,重新推导了两者之间的联系。此外,首次给出了对应关系的曲线。然后,为了更好地验证INS辅助采集,设计了一个高动态方案。此外,通过推导的数学关系,分析了不同等级的惯性导航系统对GNSS(包括全球定位系统(GPS)和北斗导航卫星系统(BDS))信号采集的影响。实验结果表明,惯导辅助采集可以减小局部频率和码相位的搜索范围,实现快速采集。根据实验结果,可以为深耦合集成选择合适的INS。

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