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Performance Comparison among Multi-GNSS Single Frequency Precise Point Positioning Techniques

机译:多GNSS单频精确点定位技术的性能比较

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摘要

Precise Point Positioning (PPP) is a technique able to compute high accuracy positioning anywhere using a single GNSS receiver and without the need for corrections from reference stations. A wide range of possible PPP algorithms, using different correction models and processing strategies, exist for both post-processing and real-time applications. PPP relies on accurate satellite and clock data, with the use of precise carrier-phase measurements. Single Frequency-PPP (SF-PPP) is currently under investigation by the scientific community, owing to its cheap implementation with respect to classical differential positioning and multi-frequency un-differenced techniques.Unfortunately, the carrier-phase observable is ambiguous by an a priori unknown integer number of cycles, called ambiguity, which is difficult to resolve with SF receivers. The aim of this paper was to study the opportunity provided by the use of a multi-GNSS constellation applied to two widespread SF-PPP models, based on different carrier-phase and code observable combinations. The algorithms were tested using static data collection carried out in an open-sky scenario. The results show decimeter level accuracy on the horizontal and vertical components of the position.
机译:精确点定位(PPP)是一种能够计算使用单个GNSS接收器的高精度定位的技术,并且不需要从参考站进行校正。使用不同的校正模型和处理策略的各种可能的PPP算法存在于后处理和实时应用。 PPP依赖于精确的卫星和时​​钟数据,使用精确的载波相位测量。根据经典差分定位和多频率不差异技术的廉价实施,科学界目前正在调查单次频率-PPP(SF-PPP)。幸办地,载流子相位可观察是暧昧的先验未知的整数周期数,称为歧义,这很难用SF接收器解析。本文的目的是研究通过使用多GNSS星座提供的机会,其基于不同的载波阶段和代码可观察组合来使用应用于两个广泛的SF-PPP模型。使用在开放天空方案中执行的静态数据收集来测试该算法。结果显示了位置和垂直部件的抽取量级精度。

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