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Improving Ambiguity Resolution for Medium Baselines Using Combined GPS and BDS Dual/Triple-Frequency Observations

机译:使用GPS和BDS对偶/三频观测值来提高中基线的歧义度

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摘要

The regional constellation of the BeiDou navigation satellite system (BDS) has been providing continuous positioning, navigation and timing services since 27 December 2012, covering China and the surrounding area. Real-time kinematic (RTK) positioning with combined BDS and GPS observations is feasible. Besides, all satellites of BDS can transmit triple-frequency signals. Using the advantages of multi-pseudorange and carrier observations from multi-systems and multi-frequencies is expected to be of much benefit for ambiguity resolution (AR). We propose an integrated AR strategy for medium baselines by using the combined GPS and BDS dual/triple-frequency observations. In the method, firstly the extra-wide-lane (EWL) ambiguities of triple-frequency system, i.e., BDS, are determined first. Then the dual-frequency WL ambiguities of BDS and GPS were resolved with the geometry-based model by using the BDS ambiguity-fixed EWL observations. After that, basic (i.e., L1/L2 or B1/B2) ambiguities of BDS and GPS are estimated together with the so-called ionosphere-constrained model, where the ambiguity-fixed WL observations are added to enhance the model strength. During both of the WL and basic AR, a partial ambiguity fixing (PAF) strategy is adopted to weaken the negative influence of new-rising or low-elevation satellites. Experiments were conducted and presented, in which the GPS/BDS dual/triple-frequency data were collected in Nanjing and Zhengzhou of China, with the baseline distance varying from about 28.6 to 51.9 km. The results indicate that, compared to the single triple-frequency BDS system, the combined system can significantly enhance the AR model strength, and thus improve AR performance for medium baselines with a 75.7% reduction of initialization time on average. Besides, more accurate and stable positioning results can also be derived by using the combined GPS/BDS system.
机译:自2012年12月27日起,北斗导航卫星系统(BDS)的区域星座一直在提供连续的定位,导航和授时服务,覆盖中国及周边地区。结合BDS和GPS观测值进行实时运动(RTK)定位是可行的。此外,BDS的所有卫星都可以发送三频信号。从多系统和多频率中利用多伪距和载波观测的优势有望为歧义度解析(AR)带来巨大的好处。我们通过结合使用GPS和BDS双频/三频观测,为中等基线提出了一种集成的AR策略。在该方法中,首先确定三频系统的超宽车道(EWL)模糊度,即BDS。然后,通过使用BDS模糊度固定的EWL观测值,使用基于几何的模型解决了BDS和GPS的双频WL模糊度。此后,估计BDS和GPS的基本(即L1 / L2或B1 / B2)模糊度,以及所谓的电离层约束模型,其中添加了模糊度固定的WL观测值以增强模型强度。在WL和基本AR期间,都采用了部分歧义修复(PAF)策略来减弱新兴或低海拔卫星的负面影响。进行并提出了实验,其中在中国南京和郑州收集了GPS / BDS双频/三频数据,基线距离在28.6至51.9 km之间变化。结果表明,与单三频BDS系统相比,组合系统可以显着增强AR模型的强度,从而提高平均基线初始化时间减少75.7%的中等基线的AR性能。此外,通过组合使用GPS / BDS系统,还可以获得更准确,稳定的定位结果。

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