Vol. 27, issue 07, article # 9

Kashkin V. B., Vladimirov V. M., Klykov A. O. GLONASS/GPS zenith tropospheric delay based on satellite data ATOVS. // Optika Atmosfery i Okeana. 2014. V. 27. No. 07. P. 615-621 [in Russian].
Copy the reference to clipboard
Abstract:

The technique of space infrared and microwave atmospheric sounding with ATOVS instrument is discussed. The results of the sounding are vertical profiles of atmosphere. Zenith tropospheric delay was estimated with the profiles and with the Saastamoinen and Hopfield delay models using surface measurements. Biases of the model-derived estimations are –0,0186 m for the Saastamoinen model and –0,0135 m for the Hopfield one during the whole 2012. The results are valid for Krasnoyarsk (middle latitudes of Siberia).

Keywords:

global navigation satellite systems, vertical profiles of troposphere, stratosphere, tropospheric delay of GLONASS/GPS signals, barometric formulae

References:

1. Perov A.I., Harisov V.N. GLONASS. Principy postroenija i funkcionirovanija. M.: Radiotehnika, 2010. 800 p.
2. Jakovlev O.I., Jakubov V.P., Urjadov V.P., Pavel'ev A.G. Rasprostranenie radiovoln. M.: LENAND, 2009. 496 p.
3. Saastamoinen J. Atmospheric Correction for the Troposphere and Stratosphere in Radio Ranging of Satellite // Int. Sympos. on the Use of Artificial Satellite. Washington, 1971. P. 247–251.
4. Hopfield H.S. Two-Quartic Tropospheric Refractivity Profile for Correcting Satellite Data // J. Geophys. Res. 1969. V. 74, N 18. P. 4487–4499.
5. Goodrum G., Kidwell K., Winston W. NOAA KLM user’s guide. National Ocean and Atmosphere Administration [Электронный ресурс] URL: http://www2. ncdc.noaa.gov/docs/klm/
6. ATOVS and AVHRR Pre-processing Package [Электронный ресурс] URL: www.metoffice.gov.uk/research/ interproj/nwpsaf/aapp/
7. International ATOVS Processing Package [Электронный ресурс] URL: http://cimss.ssec.wisc.edu/opsats/ polar/iapp/
8. Afonin S.V., Belov V.V. Napravlenija razvitija i rezul'taty passivnogo sputnikovogo zondirovanija sistemy «atmosfera – podstilajushhaja poverhnost'» v Institute optiki atmosfery SO RAN // Optika atmosf. i okeana. 2005. V. 18, N 12. P. 1031–1041.
9. Ahn M-H., Kim M-J., Chung C.-Y., Suh A.-S. Operational Implementation of the ATOVS Processing Procedure in KMA and Its Validation // Adv. in Atmos. Sci. 2003. V. 20, N 3. Р. 398–414.
10. Shhukin G.G., Itkin M.I., Karavaev D.M., Chichkova E.F. Sravnenie dannyh distancionnogo temperaturno-vlazhnostnogo zondirovanija atmosfery dlja Severo-Zapadnogo regiona RF // Materialy konf. «II Vserossijskie Armandovskie chtenija» [Jelektronnyj resurs] URL: http://www.mivlgu.ru/conf/armand2012/section_1.html
11. URL: https://ready. arl.noaa.gov/READYamet.php
12. Schueler T. On Ground-Based GPS Tropospheric Delay Estimation: PhD Thesis. Munich: Universitaet der Bundeswehr, 2001. 364 р.
13. Atmosfera: Spravochnik. L.: Gidrometeoizdat, 1991. 509 p.
14. Kashkin V.B. Vnutrennie gravitacionnye volny v troposfere // Optika atmosf. i okeana. 2013. V. 26, N 10. P. 908–916.
15. Goad C., Goodman L. A Modified Hopfield Tropospheric Refraction Correction Model. Presented at the American Geophysical Union Annual Fall Meeting at CA, 12–17 December, 1974. Р. 28.
16. Kashkin V.B., Petrov E.V. Ocenka troposfernoj zaderzhki signalov navigacionnyh sistem GLONASS i GPS s ispol'zovaniem sputnikovyh dannyh ATOVS o vertikal'nyh profiljah atmosfery // Izv. vuz. Fiz. 2010. N 9(2). P. 27–29.
17. URL: http://rp5.ru