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Exploring Signals on L5/E5a/B2a for Dual-Frequency GNSS Precise Point Positioning

机译:用于双频GNSS精确点定位的L5 / E5A / B2A上的信号

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摘要

Due to its nature, Precise Point Positioning (PPP) depends on the GNSS measurements and quality of satellite correction products used to relatively quickly provide precise and accurate positions. With the rapid evolution of Global Navigation Satellite Systems (GNSSs), new frequencies and signals are being broadcast, which have a positive impact on PPP performance. This paper presents, for the first time, a comprehensive analysis of PPP performance from these new GPS, Galileo and BeiDou-2/3 signals, which are not yet commonly used for PPP, with correct mitigation of errors such as the estimation of GPS Block-IIF L5 variations. Satellite orbits and clocks, as well as GPS Block-IIF L5 corrections, are estimated in real-time using DLR’s RETICLE engine, while the user processing is performed with York University’s PPP engine. First, as a reference, PPP performance is assessed on widely used signals: GPS L1/L2, Galileo E1/E5a, and BeiDou-2/3 B1-2/B3. Horizontal and vertical rms of 2.3 and 2.6 cm, respectively, are achieved in static processing and 5.4 and 7.5 cm in kinematic processing after 1 h of processing using real-time satellite correction products. The compatibility of BeiDou-2 and BeiDou-3 on the shared B1-2/B3 frequencies is analyzed and discrepancies in the receiver clock are found. Next, since all three constellations share two common frequencies, the paper focuses on analyzing PPP performance of GPS, Galileo and BeiDou-3 on [L1, E1, B1] at 1575.42 MHz and [L5, E5a, B2a] at 1176.45 MHz. Horizontal and vertical rms of 6.9 and 7.1 cm are achieved in kinematic processing. The effect of the known GPS Block-IIF L5 biases is studied as well, as it is shown to affect the receiver position and clock, as well as the ionospheric estimates and ambiguities. Average improvements of 15% and 20% in the horizontal and vertical rms, respectively, are observed when these biases are mitigated.
机译:由于其性质,精确点定位(PPP)取决于GNSS测量和卫星校正产品的质量,用于相对快速提供精确和准确的位置。随着全球导航卫星系统(GNSSS)的快速发展,正在广播新频率和信号,对PPP性能产生积极影响。本文首次展示了从这些新GPS,伽利略和北欧-2 / 3信号的PPP性能进行全面分析,这些表现尚不普遍用于PPP,正确缓解了GPS块的估计等误差-iif l5变型。使用DLR的掩模版引擎实时估计卫星轨道和时钟,以及GPS块-IIF L5校正,而使用York University的PPP引擎执行用户处理。首先,作为参考,在广泛使用的信号上评估PPP性能:GPS L1 / L2,Galileo E1 / E5a和Beidou-2/3 B1-2 / B3。在使用实时卫星校正产品的加工后,分别在静态处理和5.4和7.5cm中实现了2.3和2.6厘米的水平和垂直rms。分析了Beidou-2和Beidou-3在共享B1-2 / B3频率上的兼容性,并找到了接收器时钟的差异。接下来,由于所有三个星座共享两个常见频率,因此本文侧重于在1176.45MHz的1575.42MHz和[L5,E5A,B2A]的[L1,E1,B1]上分析GPS,Galileo和Beidou-3的PPP性能。在运动加工中实现了6.9和7.1厘米的水平和垂直RM。研究了已知的GPS块-IIF L5偏置的效果,因为它被示出为影响接收器位置和时钟,以及电离层估计和含糊性。分别在减轻这些偏差时,分别观察到水平和垂直rms中15%和20%的平均改善。

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