三频组合法检测和修复周跳

Lin Zhao, Yue Liu, Liang Li, Na Li
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引用次数: 1

摘要

随着全球卫星导航系统(GNSS)应用领域的不断扩大,用户对实时定位精度的要求越来越高。全球定位系统的现代化和北斗卫星导航系统的发展将导致更高精度的实时定位系统。与GPS不同,北斗系统由MEO、GEO和IGSO卫星组成。地球同步轨道卫星RDSS提供的S波段的存在,为观测数据组合带来了更大的自由度。在B1-B2-B3-S三个波段建立无几何和无电离层的BDS观测线性组合,以提高实时检测和修复周期跳的灵敏度。小的周跳可以通过线性组合放大。因此,检测到三个组合周期卡瓦。一旦检测到组合周跳,就可以使用组合系数估计每个频率上的真实周跳,并且可以固定跳。这些组合的定义是为了实现长波长和减弱几何误差和电离层误差。为了获得最优组合,本文建立了一些评价组合性能的原则。提出了一种三频小周跳检测与修复的组合方法。基于实际采集数据的仿真结果表明,所提出的方法能够检测和修复每个载波上的大小周期滑移(甚至小于1个周期)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cycle slip detection and repair with triple frequency combination method
As the application field of GNSS (Global Navigation Satellite System) is expanding, users have increasing demand of real-time positioning accuracy. The modernization of the global positioning system and the development of BDS (BeiDou Navigation Satellite System) will lead to a more high-accuracy on-the-fly positioning system. Unlike GPS, BDS is consists of MEO, GEO and IGSO satellites. The presence of the S band provided by RDSS from GEO satellites has introduced more degrees of freedom for observation data combination. We establish geometric-free and ionosphere-free linear combinations of BDS observations on the three of B1-B2-B3-S band with the aim to enhance the sensibility of detecting and repair cycle slips in real time. The small cycle slips can be magnified by the linear combinations. Therefore, the three combination cycle slips are detected. Once the combination cycle slips have been detected, the real cycle slips on each frequency can be estimated using the combination coefficients and the jumps can be fixed. These combinations are defined with the aims of long wavelength and weakening geometric and ionosphere errors. In this paper, some principles are established to appraise the performance of these combinations in order to obtain the optimal combinations. A combination method to detect and repair the small cycle slips for triple frequency of BDS is proposed. Some simulations based on real collection data have been carried out and the results have showed the proposed method is able to detect and repair both big and small cycle slips (even smaller than 1 cycle) on each carriers.
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