Non-linear variation analysis of height time series of north China GNSS reference stations
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摘要: 基于陆态网络全球卫星导航系统(GNSS)观测成果,采用功率谱分析法和最小二乘方法,以华北地区为例,研究了区域基准站高程时间序列的非线性变化特征,并分析了不同环境负载的影响.结果表明,GNSS基准站高程方向存在显著的周年和半年周期特征,且周年特征要显著于半周年特征.位于不同地区的基准站的振幅和相位存在差异,华北平原南部地区的周年振幅要大于北部地区,整体上华北地区周年变化在秋季时节振幅达到最大.不同环境负载效应对华北GNSS高程位移的影响不一致,利用三种环境负载修正GNSS序列后,水文负载的修正效果最好,非潮汐大气负载次之,非潮汐海洋负载修正结果不理想.Abstract: The non-linear variation analysis of height time series of GNSS reference Stations in North China is studied by using power spectral analysis and least-squares method based on the GNSS observations of the CMONOC network, and the effects of different environmental loads are also analyzed. The results show that there are obvious annual and semi-annual cycle features in the height time series of the GNSS reference station in North China, and the annual feature is more significant than the semi-annual feature. There are differences in the periodic amplitudes and phases of the reference stations located in different regions, and the annual amplitudes are larger in the southern part of the North China than in the northern part. The overall annual variation in North China reached its maximum in the autumn season. The effect of different environmental loading effects on the GNSS height displacement of the North China is inconsistent. Results of correcting the GNSS time series using three environmental loads, So that, the hydrological loads have the best corrections, followed by the non-tidal atmospheric loads, and non-tidal ocean loads have poor corrections.
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[1] REBISCHUNG P,ALTAMIMI Z,RAY J,et al.The IGS contribution to ITRF2014[J].Journal of geodesy,90(7):611-630.DOI: 10.1007/s00190-016-0897-6. [2] DENG L S,ZHAO L,WEIN,et al.GPS-derived geocenter motion from the IGS second reprocessing campaign[J].Earthplanets and space,2019,71(1):74.DOI: 10.1186/s40623-019-1054-2. [3] DONG D N,FANG P,BOCK Y,et al.Anatomy of apparent seasonal variations from GPS-derived site position time series[J].Journal of geophysical research atmospheres,2002,107(B4).DOI: 10.1029/2001JB000573. [4] 王敏,沈正康,董大南.非构造形变对GPS连续站位置时间序列的影响和修正[J].地球物理学报,2005,48(5):1045-1052. [5] 姜卫平,夏传义,李昭,等.环境负载对区域GPS基准站时间序列的影响分析[J].测绘学报,2014(12):1217-1223. [6] ALTAMIMI Z,REBISCHUNG P,METIVIER L,et al.ITRF2014:a new release of the international terrestrial reference frame modeling nonlinear station motions:ITRF2014[J].Journal of geophysical research:solid earth,2016,121(8):6109-6131.DOI: 10.1002/2016JB013098. [7] DENG L S,JIANG W P,LI Z,et al.Assessment of second-and third-order ionospheric effects on regional networks:case study in china with longer cmonoc gps coordinate time series[J].Journal of geodesy,2016,91(2):1-21.DOI: 10.1007/s00190-016-0957-y. [8] 明锋,杨元喜,曾安敏,等.中国区域IGS站高程时间序列季节性信号及长期趋势分析[J].中国科学(地球科学),2016,46(6):834-844. [9] GU Y C,YUAN L G,FAN D M,et al.Seasonal crustal vertical deformation induced by environmental mass loading in mainland China derived from GPS,GRACE and surface loading models[J].Advances in space research,2017,59(1):88-102.DOI: 10.1016/j.asr.2016.09.008. [10] 赵斌,聂兆生,黄勇,等.大规模GPS揭示的华北地区现今垂直运动[J].大地测量与地球动力学,2014,34(5):35-39. [11] ZHANG Y G,ZHENG W J,ZHANG D L,等.全球定位系统数据所显示的华北平原现今形变[J].世界地震译丛,2020,51(1):75-85. [12] 姜卫平,李昭,刘鸿飞,等.中国区域IGS基准站坐标时间序列非线性变化的成因分析[J].地球物理学报,2013,56(7):2228-2237. [13] 魏冠军,陈晨,黄逸宇,等.基于小波变换的CORS高程坐标时序周期性分析与降噪方法研究[J].全球定位系统,2019,44(4):61-67. [14] 田云锋,沈正康.GPS坐标时间序列中非构造噪声的剔除方法研究进展[J].地震学报,2009,31(1):68-81. [15] 杨雪,宫辉力,潘云,等.联合GRACE卫星和人工神经网络模拟华北平原地表垂直负荷形变量[J].首都师范大学学报(自然科学版),2015,36(2):83-88.
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