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Tracking Error Analysis and Performance Evaluation Method for GNSS Non-coherent Vector Tracking Loop

机译:GNSS非相干矢量跟踪环的跟踪误差分析和性能评估方法

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It is hard to accurately analyze the performance of non-coherent (NC) Global Navigation Satellite System (GNSS) vector tracking loop (VTL) according to tracking error because of tracking error propagation between tracking channels and the non-linear nature of NC-VTL. To solve this problem, this paper first analyzes NC-VTL algorithms and proposes a vector code loop control algorithm, which can be easily implemented in both hardware and software GNSS receiver. Secondly, the tracking error propagation of NC-VTL is analyzed in detail. The mathematic formula, that describes the relationship between tracking error and navigation error, timing error, ephemeris error, satellite clock bias error, atmospheric correction error, ionosphere correction error is deduced. Thirdly, according to these equations, the performance evaluation method based on semi-analytic framework for NC-VTL is established. This method can flexibly set simulation scene, NC-VTL parameters and accurately calculate the signal tracking error and navigation error. The mixing and correlation operation are discarded in this method with realistic simulation for NC-VTL's running reserved. Thus this method provides a flexible, fast way to accurately and reliably access the performance of NC-VTL. In the end, a sample evaluation result is displayed to verify the effectiveness of this evaluation method.
机译:由于跟踪通道之间的跟踪误差传播以及NC-VTL的非线性特性,很难根据跟踪误差准确地分析非相干(NC)全球导航卫星系统(GNSS)矢量跟踪环路(VTL)的性能。 。为了解决这个问题,本文首先分析了NC-VTL算法,并提出了一种矢量代码循环控制算法,该算法可以在硬件和软件GNSS接收器中轻松实现。其次,详细分析了NC-VTL的跟踪误差传播。推导了描述跟踪误差与导航误差,定时误差,星历误差,卫星时钟偏置误差,大气校正误差,电离层校正误差之间关系的数学公式。第三,根据这些方程,建立了基于半解析框架的NC-VTL性能评估方法。该方法可以灵活设置仿真场景,NC-VTL参数,并准确计算出信号跟踪误差和导航误差。在保留NC-VTL运行的真实模拟的情况下,此方法中放弃了混合和相关运算。因此,该方法提供了一种灵活,快速的方法来准确可靠地访问NC-VTL的性能。最后,显示样本评估结果以验证该评估方法的有效性。

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