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Robust GPS/BDS/INS tightly coupled integration with atmospheric constraints for long-range kinematic positioning

机译:坚固的GPS / BDS /与大气约束紧密耦合集成,用于远程运动定位

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摘要

The combination of new global navigation satellite system (GNSS) has brought great benefits to reliable positioning and ambiguity resolution (AR), especially in restricted environments. However, kinematic positioning over long ranges is still a challenge due to the presence of significant atmospheric uncertainties, which contaminates the AR process. We present a tightly coupled strategy to integrate GNSS and inertial navigation system (INS) by adding ionospheric and tropospheric delay parameters and extending the stepwise AR by applying the partial ambiguity resolution (PAR) strategy. With the aid of INS predictions, the instantaneous AR can be achieved with the proposed atmospheric prediction model, along with a dual-frequency constraint ambiguity validation test. To remove the faults in both dynamic model and measurement model, a robust innovation filtering algorithm is proposed. A field vehicular test was conducted to validate the positioning performance of the proposed algorithm over long ranges. The results show that a reliable positioning solution is obtainable for the global positioning system (GPS)/BeiDou navigation satellite system (BDS)/INS integration system with baseline larger than 130 km. The average number of fixable ambiguities reaches 14.43 by applying PAR. In addition, the fixing ratio of having fixed more than three ambiguities reaches 98.57%. The results also indicate that the robust innovation filtering can efficiently detect the discrepancies in the filter.
机译:新的全球导航卫星系统(GNSS)的组合为可靠的定位和歧义分辨率(AR)带来了很大的利益,尤其是限制环境。然而,由于存在显着的大气不确定因素,在长范围内的运动定位仍然是一个挑战,这污染了AR过程。我们介绍了一种紧密的耦合策略来整合GNSS和惯性导航系统(INS)通过添加电离层和对流层延迟参数并通过应用部分模糊分辨率(PAR)策略来延伸逐步的AR。借助于Ins预测,可以通过所提出的大气预测模型实现瞬时AR,以及双频约束歧义验证测试。为了消除动态模型和测量模型中的故障,提出了一种强大的创新滤波算法。进行现场车辆测试以验证在长范围内提出的算法的定位性能。结果表明,可靠的定位解决方案可用于全球定位系统(GPS)/ Beidou导航卫星系统(BDS)/ INS INS INS INSENTION系统,其基线大于130公里。通过申请PAR,固定歧义的平均数达到14.43。此外,固定多于三个含糊的定影比率达到98.57%。结果还表明,强大的创新过滤可以有效地检测过滤器中的差异。

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