乌克兰在南极洲的第一个永久性全球导航卫星系统站:观测数据的处理和分析

І. Savchyn, Y. Otruba, K. Tretyak
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引用次数: 1

摘要

本工作的主要目的是研究和分析乌克兰在南极洲的第一个永久性全球导航卫星系统(GNSS)站-南极学术站Vernadsky (ASAV)的坐标时间序列。我们还旨在对坐标时间序列值进行地球物理因素的综合研究,并确定该GNSS站的位移分量值。测量数据的处理使用Bernese GNSS software v.5.2软件。采用伯尔尼处理引擎(BPE)模块和RNX2SNX (RINEX-TO-SINEX)处理算法,获得永久GNSS站ASAV的日解。在IGb08坐标系下确定了永久GNSS站ASAV的日解及其位移矢量。永久GNSS站ASAV的矢量为东北方向。所得结果与该地区的构造板块运动模式一致。研究各种地球物理因素对永久GNSS站ASAV坐标时间序列谐波振荡特征周期的影响。进行了一系列研究,其中包括开发一种算法和一套用于处理时间序列和确定最准确描述它们的最佳曲线的应用程序。因此,对于每一个时间序列,用原方程来确定最优振荡周期。结果揭示了GNSS永久站ASAV值在不同时期波动的异常分布,这表明地球物理因素对空间定位影响的复杂性,证实了系统研究这些因素对GNSS站稳定性和位移影响的必要性。可以确定的是,永久GNSS站ASAV暴露于与环境条件变化相关的季节性振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The first Ukrainian permanent GNSS station in Antarctica: processing and analysis of observation data
The main purpose of this work is to study and analyze the coordinate time series of the first Ukrainian permanent Global Navigation Satellite System (GNSS) station in Antarctica — Antarctic Station Academic Vernadsky (ASAV). We also aimed to do a comprehensive study of geophysical factors on the coordinate time series values and determine the values of the displacement components of this GNSS station. Processing of measurements was performed using the software Bernese GNSS Software v.5.2. The Bernese Processing Engine (BPE) module and the RNX2SNX (RINEX-TO-SINEX) processing algorithm were used to obtain daily solutions of permanent GNSS station ASAV. Daily solutions of the permanent GNSS station ASAV and the vector of its displacements were determined in the coordinate system IGb08. The vector of the permanent GNSS station ASAV has a northeasterly direction. The obtained results are consistent with the model of tectonic plate movements of this region. To study the characteristic periods of harmonic oscillations of coordinate time series of permanent GNSS station ASAV due to various geophysical factors. A set of studies was conducted, which included the development of an algorithm and a package of applications for processing time series and determining optimal curves that most accurately describe them. Thus, for each time series, the original equation is used to determine the optimal period of oscillation. As a result, an anomalous distribution of fluctuations in the values of permanent GNSS station ASAV with different periods was revealed — this indicates the complex nature of the influence of geophysical factors on the spatial location and confirms the need for systematic studies of such factors on the stability and displacement of GNSS station. It is established that the permanent GNSS station ASAV is exposed to seasonal oscillations, associated with changes in environmental conditions.
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