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首页> 外文期刊>Journal of applied geodesy >Precise point positioning with decimetre accuracy using wide-lane ambiguities and triple-frequency GNSS data
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Precise point positioning with decimetre accuracy using wide-lane ambiguities and triple-frequency GNSS data

机译:使用宽车道模拟和三频GNSS数据,用Decimetre精度定位精确点定位

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This paper proposes precise point positioning (PPP) methods that offer an accuracy of a few decimetres (dm) with triple frequency GNSS data. Firstly, an enhanced triple frequency linear combination is presented for rapid fixing of the extra wide-lane (EWL) and widelane (WL) ambiguities for GPS, Beidou-2 and Galileo. This has improved performance compared to the Melbourne-Wubbena (MW) linear combination, and has 6.7 % lower measurement noise for the GPS L1/L2 signals, 12.7 % for L1/L5 and 0.7 % for L2/L5. Analysis with tested data showed a 5-6 % reduction in time required to fix the N-21 and N-51 ambiguities.Once the EWL/WL ambiguities are fixed with the proposed linear combinations, three methods are presented that aim to provide positioning accuracy of a few dm. In the first approach, the three EWL/WL ambiguities in their respective phase equations are used to derive a low-noise ionosphere-free (IF) linear combination. The second method uses a low noise IF combination with two carrier-phase EWL/WL equations and a single pseudorange measurement. The third method uses a low noise IF combination with a single carrier phase EWL equation and two pseudorange measurements. These proposed methods can provide dm level positioning accuracy if carrier phase measurements with mm precision is tracked by the receiver. When comparing these combinations with a combination proposed in [22], it is found that superior performance is achieved with the third method when carrier phase noise is 5-6 mm for GPS and Beidou-2 and 2-3 mm for Galileo. This model only requires the EWL ambiguity to be fixed which typically takes just one epoch of data. Thus, the user achieves instant decimetre level PPP accuracy.
机译:本文提出了精确点定位(PPP)方法,其提供了具有三频GNSS数据的少数二维级(DM)的精度。首先,提高了增强的三频线性组合,用于快速固定GPS,北欧-2和伽利略的额外宽车道(EWL)和WLOWELANE(WL)含糊不清。与墨尔本 - 武器(MW)线性组合相比,这具有改善的性能,并且对于GPS L1 / L2信号的测量噪声具有6.7%,L1 / L5的12.7%和0.7%,对于L2 / L5。使用测试数据的分析显示,修复N-21和N-51歧义所需的时间减少了5-6%.NCE eWL / WL含糊不清是用所提出的线性组合来固定的,提出了三种方法,旨在提供定位精度几个dm。在第一种方法中,它们各自的相位方程中的三个EWL / WL歧义用于得出无噪声电离层(IF)线性组合。如果与两个载波相位EWL / WL方程和单个伪距测量组合,则第二种方法使用低噪声。第三种方法如果与单载波相位EWL方程和两个伪距测量组合,则使用低噪声。如果接收器跟踪具有MM精度的载波相位测量,这些所提出的方法可以提供DM电平定位精度。当将这些组合与[22]中提出的组合进行比较时,发现当载体相位噪声为GPS和Beidou-2和伽利略的贝达-2和> 2-3mm时,使用第三种方法实现优异的性能。该模型仅需要修复EWL模糊性,这通常只需要一个数据时的一个时期。因此,用户实现了即时的Decimetre水平PPP精度。

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