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Analyzing the Impact of Satellite Clock-TGD Coupled Error on BDS Positioning Accuracy

机译:分析卫星时钟TGD耦合误差对BDS定位精度的影响

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BeiDou Navigation Satellite System (BDS) has got the ability of realtime navigation and high accuracy positioning services for the Asian-Pacific regions by the end of 2012 with the constellation of 5GEOs + 5IGSOs + 4MEOs. Currently, although BDS can provide positioning service better than 10 m, there remains a problem that the positions calculated with Bl and B2 pseudo-range ionosphere-free combination (BC) are a little worse in accuracy than those obtained from Bl pseudo-range only. This phenomena can be partly explained with the observing errors (white noise and multi-path), and the accuracy of ionosphere model. Besides, the coupled error for BDS satellite clock-TGD would be another important factor. Here we analyze this coupled error and its effect on BDS real-time positioning based on BDS precise clock and BDS satellites DCB provided by GNSS Research Center (GRC), Wuhan University. 12 days' BDS observations from BeiDou experimental tracking stations (BETS) have been processed and investigated with the precise products by GRC and broadcast ephemeris. Results indicate that the coupled error between BDS broadcast satellite clock and TGD of BC is 5.04 ns, which is about 3 times larger than that of Bl (1.79 ns). And it is a system bias that results BC positioning accuracy worse than that of Bl. In additional, by analyzing BDS observations' multi-path noise, it shows the multi-path noise is one of the facts leading to BDS BC positioning accuracy a litter worse than B1 positioning accuracy. We also find that the receiver noise is the main reason affecting BDS velocity accuracy.
机译:北投导航卫星系统(BDS)在2012年底之前,亚太地区的实时导航和高精度定位服务的能力与5Geos + 5igsos + 4MEOS的星座。目前,尽管BDS可以提供​​优于10米的定位服务,但仍然存在与BL和B2伪范围的离子层组合(BC)计算的位置比仅从BL伪范围获得的位置略差。 。通过观察误差(白噪声和多路径)和电离层模型的准确性,可以部分地解释这种现象。此外,BDS卫星时钟-TGD的耦合误差将是另一个重要因素。在这里,我们分析了基于BDS精密时钟和BDS Satellites DCB,武汉大学提供的BDS精密时钟和BDS卫星DCB对BDS实时定位的影响。从GRC和广播星历中的精确产品处理并调查了来自北斗实验跟踪站(BETS)的12天的BDS观察。结果表明,BC广播卫星时钟和BC的TGD之间的耦合误差为5.04ns,比BL(1.79ns)大约3倍。它是一个系统偏见,结果BC定位精度比BL的精度差。另外,通过分析BDS观测的多路噪声,它表示多路径噪声是导致BDS BC定位精度的事实之一,垃圾比B1定位精度更差。我们还发现接收器噪声是影响BDS速度精度的主要原因。

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