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MULTI-GNSS SIGNAL PROCESSING WITH CLOCK-DIFFERENCE MODELING

机译:时钟差建模的多GNSS信号处理

摘要

Three new methods are presented to improve floating solutions and ambiguity resolution for multiple global -satellite navigation systems (GNSS), one of which may be an FDMA-based GNSS such as GLONASS: (1) modeling of the hardware-related differential clock error between two (or more) different GNSS, (2) modeling the frequency-dependent biases present in frequency-division multiple access (FDMA) GNSS, and (3) an ambiguity resolution method called Scoreboard Partial Fixing (SPF). The methods presented are independent of the number of carrier frequencies tracked for each satellite navigation system. Their application results in quicker and more reliable ambiguity resolution. The benefits of combining observations of multiple GNSS are exploited in a very efficient way, in contrast to known algorithms which often result in degraded performance with multiple GNSS. The frequency-dependent bias method has been found effective with GNSS observations from a combination of substantially dissimilar hardware, e.g., for processing signals from GNSS receivers of different manufacturers.
机译:提出了三种新的方法来改善多个全球卫星导航系统(GNSS)的浮动解决方案和歧义分辨率,其中一种可能是基于FDMA的GNSS,例如GLONASS:(1)建模之间的硬件相关差分时钟误差两个(或多个)不同的GNSS,(2)对频分多址(FDMA)GNSS中存在的频率相关偏差进行建模,以及(3)一种称为计分板部分固定(SPF)的歧义解决方法。提出的方法与为每个卫星导航系统跟踪的载波频率的数量无关。它们的应用可以更快,更可靠地解决歧义。与通常会导致多个GNSS的性能下降的已知算法相比,以非常有效的方式利用了组合多个GNSS观测值的好处。已经发现频率依赖性偏置方法可通过从实质上不同的硬件组合中获得的GNSS观测结果有效,例如,用于处理来自不同制造商的GNSS接收机的信号。

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