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Rover autonomous integrity monitoring of GNSS RTK positioning solutions with multi-constellations

机译:具有多星座的GNSS RTK定位解决方案的流动站自主完整性监控

摘要

This paper studies receiver autonomous integrity monitoring (RAIM) algorithms and performance benefits of RTK solutions with multiple-constellations. The proposed method is generally known as Multi-constellation RAIM -McRAIM. The McRAIM algorithms take advantage of the ambiguity invariant character to assist fast identification of multiple satellite faults in the context of multiple constellations, and then detect faulty satellites in the follow-up ambiguity search and position estimation processes. The concept of Virtual Galileo Constellation (VGC) is used to generate useful data sets of dual-constellations for performance analysis. Experimental results from a 24-h data set demonstrate that with GPS&VGC constellations, McRAIM can significantly enhance the detection and exclusion probabilities of two simultaneous faulty satellites in RTK solutions.
机译:本文研究了具有多个星座的接收机自主完整性监控(RAIM)算法和RTK解决方案的性能优势。所提出的方法通常被称为多星座RAIM -McRAIM。 McRAIM算法利用模糊度不变性来协助快速识别多个星座中的多个卫星故障,然后在后续的模糊度搜索和位置估计过程中检测出有故障的卫星。虚拟伽利略星座(VGC)的概念用于生成有用的双星座数据集,以进行性能分析。来自24小时数据集的实验结果表明,借助GPS&VGC星座,McRAIM可以显着提高RTK解决方案中两个同时出现故障的卫星的检测和排除概率。

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