Preview

Civil Aviation High Technologies

Advanced search

THE ELABORATION OF THE OPTIMAL SYNTHESIS ALGORITHM FOR COMPLEX PROCESSING INFORMATION OF THE SPATIAL POSITION OF THE UPPER-AIR RADIOSONDE

Abstract

The article considers the elaboration of the problem of optimal algorithm synthesis of complex signal processing of satellite GLONASS/GPS systems navigation relayed from the Board of the upper-air radiosonde and the output data upper-air radar to determine the spatial coordinates of upper-air radiosonde. The upper-air sounding is performed with the help of technical means of radio sounding system of atmosphere, including the upper-air radiosonde, manufactured in free flight, and ground supporting equipment, which includes devices for signal processing of upper-air radiosonde and preparation of the operational upper-air messages. The peculiarity of atmosphere radio sounding of domestic system is the measurement with method of radar slant range to upper-air radiosonde, the viewing angles of the antenna upper-air radar to determine azimuth and elevation of upper-air radiosonde. The disadvantage of the radar method of radiosonde support is the relatively low accuracy of determining the coordinates of the radiosonde and the possible disruption of automatic tracking in angular coordinates. Satellite navigation system based on the microwave sensors has clear advantages in terms of efficiency, size, mobility, and use on mobile objects, however, with significant drawbacks associated primarily with the geometric factor and the error propagation of the navigation signal. The article presents a mathematical model useful incoherent GLONASS/GPS signals, relayed by the upper-air radiosonde, and interference on the input receiver ground point for complex information processing, and mathematical models of output data in upper-air radars.

About the Authors

E. A. Bolelov
МГТУ ГА
Russian Federation


Yu. M. Ermoshenko
ООО «Аэроприбор»
Russian Federation


References

1. Yarlykov M.S., Mironov M.A. Markov theory of estimating random processes. Moscow, Radio and communication, 1993.

2. Ivanov V.E., Fridzon M.B., Essack S.P. Sounding of the atmosphere. Technical and metrological aspects of the development and application of radiosonde measuring means. Ed. by V.E. Ivanov. Ekaterinburg, 2004.

3. Bolelov E.A., Ermoshenko Yu.M., Fridzon M.B. Improving the reliability of the system of radio sounding of atmosphere by aggregation methods for tracking of the radiosonde in flight. The MSTUCA Scientific Bulletin. 2015. Issue 222.

4. Yazenkov V.S. Fundamentals of satellite navigation. Moscow, Hot line-Telecom, 2005.

5. The information message center global monitoring CGM 2005 Temporary failure of the GLONASS satellite No. 22. http://www.sdcm.ru.


Review

For citations:


Bolelov E.A., Ermoshenko Yu.M. THE ELABORATION OF THE OPTIMAL SYNTHESIS ALGORITHM FOR COMPLEX PROCESSING INFORMATION OF THE SPATIAL POSITION OF THE UPPER-AIR RADIOSONDE. Civil Aviation High Technologies. 2016;(226):229-239. (In Russ.)

Views: 484


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2079-0619 (Print)
ISSN 2542-0119 (Online)