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首页> 外文期刊>Journal of Geodesy >ERTK: extra-wide-lane RTK of triple-frequency GNSS signals
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ERTK: extra-wide-lane RTK of triple-frequency GNSS signals

机译:ERTK:三频GNSS信号的超宽带RTK

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Triple-frequency signals have thus far been available for all satellites of BeiDou and Galileo systems and for some GPS satellites. The main benefit of triple-frequency signals is their formation of extra-wide-lane (EWL) combinations whose ambiguities can be instantaneously fixed for several 10-100 km baselines. Yet, this benefit has not been fully exploited and only used as a constraint for narrow-lane (NL) ambiguity resolution (AR) in most previous studies. In this study, we comprehensively investigate the real-time kinematic (RTK) capabilities of EWL observations, also referred to as EWL RTK (ERTK). We begin by mathematically expressing the ease of EWL AR and the difficulty of NL AR, respectively, using a numerical demonstration. We then present the mathematical models for ERTK including the ionosphere-ignored, ionosphere-float and ionosphere-smoothed types. The experiments are conducted using a four-station network of real triple-frequency BeiDou data with baseline lengths from 33 to 75 km. The results show that the ionosphere-ignored ERTK achieves real-time solutions with a horizontal accuracy of about 10 cm. Although the ionosphere-float ERTK solutions are very noisy, they can be quickly improved at the centimetre level by further applying the ionosphere-smoothed model. Note that such accurate results are very promising and already satisfy many applications without complicated NL AR. To the best of our knowledge, this is the first comprehensive study to make full use of EWL observations of triple-frequency signals on RTK.
机译:迄今为止,北斗和伽利略系统的所有卫星以及某些GPS卫星都可以使用三频信号。三频信号的主要好处是它们形成了超宽车道(EWL)组合,其模糊度可以在几个10-100 km的基线上即时固定。但是,在大多数先前的研究中,尚未充分利用此好处,仅将其用作窄车道(NL)模糊度解决方案(AR)的约束。在这项研究中,我们全面研究了EWL观测值的实时运动(RTK)功能,也称为EWL RTK(ERTK)。我们首先通过数值演示用数学方法分别表示EWL AR的难易程度和NL AR的难易程度。然后,我们介绍ERTK的数学模型,包括电离层忽略,电离层浮动和电离层平滑类型。该实验是使用四频真实北频北斗数据台站网络进行的,基线长度为33至75 km。结果表明,忽略电离层的ERTK可以实现水平精度约为10 cm的实时解决方案。尽管电离层浮动ERTK解决方案非常嘈杂,但可以通过进一步应用电离层平滑模型来在厘米级别快速改进它们。请注意,这种准确的结果非常有前途,并且已经可以满足许多应用而无需复杂的NL AR。据我们所知,这是第一个充分利用RTK上三频信号的EWL观测的综合研究。

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