首页> 外文会议>International Astronautical Congress >EVALUATION OF THE AVAILABILITY, ACCURACY, RELIABILITY AND CARRIER-PHASE AMBIGUITY RESOLUTION CAPABILITIES OFTHE GALILEO GNSS IN CONJUNCTION WITH MODERNIZED GPS
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EVALUATION OF THE AVAILABILITY, ACCURACY, RELIABILITY AND CARRIER-PHASE AMBIGUITY RESOLUTION CAPABILITIES OFTHE GALILEO GNSS IN CONJUNCTION WITH MODERNIZED GPS

机译:评估伽利略GNSS与现代化GPS的可用性,准确性,可靠性和载波相位模糊性分辨率的功能

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The positioning performance of the Galileo GNSS operating in conjunction with the Global Positioning System is assessed through simulation. Results of two simulations are presented. First, the positioning accuracy and statistical reliability of the systems is assessed using global constellation geometry simulations. Using GPS and Galileo together is shown to improve availability and accuracy. Statistical reliability, meaning the ability of the system to identify and control measurement blunders, is greatly increased due to the much larger number of redundant observations provided by using the two GNSS systems together. Results of a second simulation are presented demonstrating the advantages of using the two systems together for precise carrier phase differential positioning. Modernized GPS and Galileo pseudorange and carrier phase observations are simulated. A new carrier phase positioning algorithm is shown that uses three frequency carrier phase ambiguity resolution in conjunction with stochastic ionospheric modeling. The use of multiple carriers implies more redundancy as well as better observability for ionospheric estimation. This results in a more consistent estimation process and allows for very rapid and reliable ambiguity resolution over much longer baselines than are possible with the current GPS signals. Results of this simulation are presented in the ambiguity resolution domain and the position domain.
机译:通过模拟评估与全球定位系统一起操作的伽利略GNS的定位性能。提出了两种模拟的结果。首先,使用全局星座几何模拟来评估系统的定位精度和统计可靠性。将GPS和伽利略一起显示在一起,以提高可用性和准确性。统计可靠性,这意味着系统识别和控制测量漏洞的能力,由于使用两个GNSS系统在一起提供的冗余观测数量大量的冗余观测,大大增加。提出了第二模拟的结果,示出了使用两个系统一起用于精确承载相位差分定位的优点。模拟了现代化的GPS和伽利略伪静音和载体相位观察。示出了一种新的载波相位定位算法,其使用三个频率载波相位模糊的分辨率与随机电离层建模结合。多载波的使用意味着更冗余,以及对电离层估计的更好可观察性。这导致更一致的估计过程,并且允许非常快速可靠的模糊性分辨率,而不是随着当前GPS信号的更长的基线。该模拟的结果显示在模糊的分辨率域和位置域中。

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