1. D. V. Sutyrin, A. Yu. Gribov, R. I. Balaev, A. A. Gorokhina, V. G. Pal'chikov, A. N. Malimon, and S. N. Slyusarev, Towards the Formation of an Optical Time Scale at VNIIFTRI, Kvant. Élektronika, 52, No. 6, 498–504 (2022), https://doi.org/10.1070/QEL18058.
2. Recommendation ITU-R TF.1153-4 (08/2015). The Operational Use of Two-Way Satellite Time and Frequency Transfer Employing Pseudorandom Noise Codes. URL: https://www.itu.int/dms_pubrec/itu-r/rec/tf/R-REC-TF.1153-4-201508-I!!PDF-R.pdf (accessed: 11.01.2023).
3. W. Schafer, Two-Way Time and Frequency Transfer via Satellite TWSTFT, 2013 Asia-Pacific Radio Science Conference Taipei, Taiwan, September 3–7 (2013).
4. W. Schaefer, A. Pawlitzki, and T. Kuhn, New Trends in Two-Way Time and Frequency Transfer via Satellite, 31st Annual Precise Time and Time Interval Systems and Applications Meeting, Dana Point, California December 7–9 (1999), available at: https://www.timetech.de/fileadmin/Documents/new-trends-in-two-way-time-and-frequency.pdf (accessed: 11.01.2023).
5. M. Fujieda, T. Gotoh, F. Nakagawa, R. Tabuchi, M. Aida, and J. Amagai, IEEE Trans. Ultrason. Ferroelectr. Freq. Control, 59, No. 12, 2625–2630 (2012), https://doi.org/10.1109/TUFFC.2012.2503.