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Precise relative positioning using real tracking data from COMPASS GEO and IGSO satellites

机译:使用来自COMPASS GEO和IGSO卫星的真实跟踪数据进行精确的相对定位

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摘要

China completed a basic COMPASS navigation network with three Geostationary and three Inclined Geosynchronous satellites in orbit in April 2011. The network has been able to provide preliminary positioning and navigation functions. We first present a quality analysis using 1-week COMPASS measurements collected in Wuhan. Satellite visibility and validity of measurements, carrier-to-noise density ratio and code noise are analyzed. The analysis of multipath combinations shows that the noise level of COMPASS code measurements is higher than that of GPS collected using the same receiver. Second, the results of positioning are presented and analyzed. For the standalone COMPASS solutions, an accuracy of 20 m can be achieved. An accuracy of 3.0 m for the vertical, 1.5 m for the North and about 0.6-0.8 m for the East component is obtained using dual-frequency code only measurements for a short baseline. More importantly, code and phase measurements of the short baseline are processed together to obtain precise relative positioning. Kinematic solutions are then compared with the ground truth. The precision of COMPASS only solutions is better than 2 cm for the North component and 4 cm for the vertical. The standard deviation of the East component is smaller than 1 cm, which is even better than that of the East component of GPS solutions. The accuracy of GPS/COMPASS combination solutions is at least 20 % better than that of GPS alone. Furthermore, the geometry-based residuals of double differenced phase and code measurements are analyzed. The analysis shows that the noise level of un-differenced phase measurements is about 2-4 mm on both B1 and B2 frequencies. For the code measurements, the noise level is less than 0.45 m for B1 CA and about 0.35 m for B2 P code. Many of the COMPASS results presented are very promising and have been obtained for the first time.
机译:2011年4月,中国完成了由三颗对地静止卫星和三颗倾斜地球同步卫星送入轨道的COMPASS基本导航网络。该网络已能够提供初步的定位和导航功能。我们首先使用武汉收集的为期1周的COMPASS测量结果进行质量分析。分析了卫星的能见度和测量的有效性,载噪比和代码噪声。对多径组合的分析表明,COMPASS码测量的噪声水平高于使用同一接收机收集的GPS噪声水平。其次,介绍并分析了定位结果。对于独立的COMPASS解决方案,可以实现20 m的精度。垂直精度为3.0 m,北部精度为1.5 m,东部精度为0.6-0.8 m,这是使用短频基线的双频码测量得出的。更重要的是,短基线的代码和相位测量值一起处理以获得精确的相对位置。然后将运动学解与基本事实进行比较。仅COMPASS解决方案的精度对于北部组件来说要好于2厘米,对于垂直组件要好于4厘米。 East分量的标准偏差小于1 cm,甚至比GPS解决方案的East分量的标准偏差还要好。 GPS / COMPASS组合解决方案的精度比单独的GPS至少高20%。此外,分析了双相差和代码测量的基于几何的残差。分析表明,在B1和B2频率上,未差分相位测量的噪声水平均为2-4 mm。对于代码测量,对于B1 CA,噪声级别小于0.45 m,对于B2 P代码,噪声级别小于0.35 m。提出的许多COMPASS结果都是非常有希望的,并且是首次获得。

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