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GNSS Vertical Coordinate Time Series Analysis Using Single-Channel Independent Component Analysis Method

机译:GNSS垂直坐标时间序列分析使用单通道独立分量分析方法

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摘要

Daily vertical coordinate time series of Global Navigation Satellite System (GNSS) stations usually contains tectonic and non-tectonic deformation signals, residual atmospheric delay signals, measurement noise, etc. In geophysical studies, it is very important to separate various geophysical signals from the GNSS time series to truthfully reflect the effect of mass loadings on crustal deformation. Based on the independence of mass loadings, we combine the Ensemble Empirical Mode Decomposition (EEMD) with the Phase Space Reconstruction-based Independent Component Analysis (PSR-ICA) method to analyze the vertical time series of GNSS reference stations. In the simulation experiment, the seasonal non-tectonic signal is simulated by the sum of the correction of atmospheric mass loading and soil moisture mass loading. The simulated seasonal non-tectonic signal can be separated into two independent signals using the PSR-ICA method, which strongly correlated with atmospheric mass loading and soil moisture mass loading, respectively. Likewise, in the analysis of the vertical time series of GNSS reference stations of Crustal Movement Observation Network of China (CMONOC), similar results have been obtained using the combined EEMD and PSR-ICA method. All these results indicate that the EEMD and PSR-ICA method can effectively separate the independent atmospheric and soil moisture mass loading signals and illustrate the significant cause of the seasonal variation of GNSS vertical time series in the mainland of China.
机译:全球导航卫星系统(GNSS)站的日常垂直坐标时间序列通常包含构造和非构造变形信号,残留的大气延迟信号,测量噪声等在地球物理学研究中,将各种地球物理信号与GNSS分离非常重要时间序列如实地反映了大规模载荷对地壳变形的影响。基于批量载荷的独立性,我们将集合经验模式分解(EEMD)与基于相空间重建的独立分量分析(PSR-ICA)方法相结合,以分析GNSS参考站的垂直时间序列。在仿真实验中,通过大气质量加载和土壤水分质量荷载的校正之和模拟季节性非构造信号。模拟的季节性非构造信号可以使用PSR-ICA方法分离成两个独立信号,其分别与大气质量负荷和土壤水分质量负荷强烈相关。同样,在分析中国(CMONOC)的地壳运动观察网络的GNSS参考站的垂直时间序列,使用组合的EEMD和PSR-ICA方法获得了类似的结果。所有这些结果表明,EEMD和PSR-ICA方法可以有效地分离独立的大气和土壤湿度质量加载信号,并说明了中国内地GNSS垂直时间序列季节变化的重要原因。

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