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Cheng et al. Satell Navig             (2021) 2:2                                        Page 12 of 12





            Altamimi, Z., Rebischung, P., Métivier, L., & Xavier, C. (2016). ITRF2014: A new   Davis, J. L., Wernicke, B. P., & Tamisiea, M. E. (2012). On seasonal signals in geo-
               release of the International Terrestrial Reference Frame modeling nonlin-  detic time series. Journal of Geophysical Research, 117, B01403. https ://doi.
               ear station motions. Journal of Geophysical Research: Solid Earth. https ://  org/10.1029/2011J B0086 90.
               doi.org/10.1002/2016J B0130 98.                Gan, W., Zhang, P., Shen, Z.-K., Niu, Z., Wang, M., Wan, Y., et al. (2007). Present-
            Altamimi, Z., Sillard, P., & Boucher, C. (2002). ITRF2000: A new release of the   day crustal motion within the Tibetan Plateau inferred from GPS
               International Terrestrial Reference Frame for earth science applications.   measurements. Journal of Geophysical Research, 112, B08416. https ://doi.
               Journal of Geophysical Research, 107(B10), 2214.  org/10.1029/2005J B0041 20.
            Amiri-Simkooei, A., Tiberius, C., & Teunissen, S. P. (2007). Assessment of noise in   Gross, R., Beutler, G., & Plag, H. P. (2009). Integrated scientifc and societal user
               GPS coordinate time series: Methodology and results. Journal of Geophysi-  requirements and functional specifcations for the GGOS. Global Geodetic
               cal Research, 112, B07413. https ://doi.org/10.1029/2006J B0049 13.  Observing System (pp. 209–224). Dordrecht: Springer.
            Bennett, R. A. (2008). Instantaneous deformation from continuous GPS: Contri-  Li, Z. (2003). Research on global tectonic features using space earth observa-
               butions from quasi-periodic loads. Geophysical Journal International, 174,   tion technology. PhD thesis. (in Chinese).
               1052–1064.                                     Liu, H., Jiang, W., Wang, Y., Chen, H., & Wu, Y. (2014). Research on joint data
            Blewitt, G., & Lavalée, D. (2002). Efect of annual signals on geodetic   processing method using regional CORS in CGCS2000. Geomatics and
               velocity. Journal of Geophysical Research, 107(B7), 2145. https ://doi.  Information Science of Wuhan University, 39(2), 161–165. (in Chinese).
               org/10.1029/2001J B0005 70.                    Wang, Z., Chen, P., Sun, X., Hu, Y., & Meng, Q. (2020). Research and accu-
            Chen, J. (2008). Chinese modern geodetic datum—The China geodetic   racy analysis of coordinate transformation method from ITRF2014 to
               coordinate system 2000 (CGCS2000) and its framework. Actageodaeticet   CGCS2000. Urban Geotechnical Investigation & Surveying, 2020(2), 119–122.
               Cartographica Sinica, 37, 3.                      (in Chinese).
            Chen, X. (2013). Method for constructing the velocity feld model of the Chi-  Wei, Z., Liu, G., & Wu, F. (2011). The China geodetic coordinate system 2000:
               nese mainland crust movement. Master’s thesis. (in Chinese).  −China velocity feld. Actageodaeticaet Cartographica Sinica, 40, 4. (in
            Cheng, P., Cheng, Y., et al. (2008). The user guide of the China Geodetic Coordinate   Chinese).
               System 2000. Beijing: Surveying and Mapping Press. (in Chinese).
            Cheng, P., Cheng, Y., Bei, J., et al. (2013). CGCS2000 plate motion model. Acta   Publisher’s Note
               Geodaetica et Cartographica Sinica, 42(2), 159–167. (in Chinese).
            Cheng, P., Cheng, Y., Wang, X., Wu, S., & Xu, Y. (2020). Realization of an optimal   Springer Nature remains neutral with regard to jurisdictional claims in pub-
               dynamic geodetic reference frame in China: methodology and applica-  lished maps and institutional afliations.
               tions. Engineering, 6(8), 879–897.
            Cheng, Y., Dang, Y., Bei, J., et al. (2017). CGCS2000 maintain methods analysis.
               Geomatics and Information Science of Wuhan University, 42, 4.
            Collilieux, X., Altamimi, Z., Coulot, D., van Dam, T., & Ray, J. (2010). Impact of
               loading efects on determination of the International Terrestrial Reference
               Frame. Advances in Space Research, 45, 144–154. https ://doi.org/10.1016/j.
               asr.2009.08.024.
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