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Real-time cycle slip detection in triple-frequency GNSS

机译:三频GNSS中的实时周跳检测

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The modernization of the global positioning system and the advent of the European project Galileo will lead to a multifrequency global navigation satellite system (GNSS). The presence of new frequencies introduces more degrees of freedom in the GNSS data combination. We define linear combinations of GNSS observations with the aim to detect and correct cycle slips in real time. In particular, the detection is based on five geometry-free linear combinations used in three cascading steps. Most of the jumps are detected in the first step using three minimum-noise combinations of phase and code observations. The remaining jumps with very small amplitude are detected in the other two steps by means of two-tailored linear combinations of phase observations. Once the epoch of the slip has been detected, its amplitude is estimated using other linear combinations of phase observations. These combinations are defined with the aim of discriminating between the possible combinations of jump amplitudes in the three carriers. The method has been tested on simulated data and 1-second triple-frequency undifferenced GPS data coming from a friendly multipath environment. Results show that the proposed method is able to detect and repair all combinations of cycle slips in the three carriers.
机译:全球定位系统的现代化以及欧洲伽利略计划的到来将催生多频全球导航卫星系统(GNSS)。新频率的出现为GNSS数据组合带来了更多的自由度。我们定义GNSS观测值的线性组合,旨在实时检测和校正周期滑动。特别地,该检测基于在三个级联步骤中使用的五个无几何形状的线性组合。在第一步中,使用相位和代码观测值的三种最小噪声组合来检测大多数跳跃。在其他两个步骤中,通过相位观测值的两步线性组合来检测剩余幅度很小的跳跃。一旦检测到滑移的历元,就可以使用相位观察的其他线性组合来估计其幅度。定义这些组合的目的是区分三个载波中跳跃幅度的可能组合。该方法已经过模拟数据和来自友好多径环境的1秒三频无差异GPS数据的测试。结果表明,所提出的方法能够检测和修复三个载波中周期滑移的所有组合。

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