Peculiarities of precision space platform design for navigation satellites
V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov
Institute of Physics (IOP)
Published 2018
Institute of Physics (IOP)
Published 2018
Publication Date: |
2018-12-02
|
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Publisher: |
Institute of Physics (IOP)
|
Print ISSN: |
1757-8981
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Electronic ISSN: |
1757-899X
|
Topics: |
Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
|
Published by: |
_version_ | 1836399096349327360 |
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autor | V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov |
beschreibung | Space radio navigation combines the latest achievements of computer and telecommunication technologies. The symbiosis of navigation satellite system, modern radio communication and electronic cartography allows to determine the location and speed of a moving vehicle, calculate distances, develop efficient routes, monitor compliance, get information about cartographic objects. There are now two systems available: GPS (US) and GLONASS (Russia). Using both systems ensures more accurate determination of the coordinates of moving objects. The article deals with the issues related to the creation of a new type of space platform for navigation spacecrafts, namely, a precision space platform. The design requirements for precision space platforms of the navigation satellite are considered. The principles of designing the elements of precision platform that meet the requirements of a navigation satellite in terms of accuracy are determined. Finally, the dynamics of changes in the paramete... |
citation_standardnr | 6363621 |
datenlieferant | ipn_articles |
feed_id | 123476 |
feed_publisher | Institute of Physics (IOP) |
feed_publisher_url | http://www.iop.org/ |
insertion_date | 2018-12-02 |
journaleissn | 1757-899X |
journalissn | 1757-8981 |
publikationsjahr_anzeige | 2018 |
publikationsjahr_facette | 2018 |
publikationsjahr_intervall | 7984:2015-2019 |
publikationsjahr_sort | 2018 |
publisher | Institute of Physics (IOP) |
quelle | IOP Conference Series: Materials Science and Engineering |
relation | http://iopscience.iop.org/1757-899X/450/2/022024 |
search_space | articles |
shingle_author_1 | V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov |
shingle_author_2 | V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov |
shingle_author_3 | V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov |
shingle_author_4 | V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov |
shingle_catch_all_1 | Peculiarities of precision space platform design for navigation satellites Space radio navigation combines the latest achievements of computer and telecommunication technologies. The symbiosis of navigation satellite system, modern radio communication and electronic cartography allows to determine the location and speed of a moving vehicle, calculate distances, develop efficient routes, monitor compliance, get information about cartographic objects. There are now two systems available: GPS (US) and GLONASS (Russia). Using both systems ensures more accurate determination of the coordinates of moving objects. The article deals with the issues related to the creation of a new type of space platform for navigation spacecrafts, namely, a precision space platform. The design requirements for precision space platforms of the navigation satellite are considered. The principles of designing the elements of precision platform that meet the requirements of a navigation satellite in terms of accuracy are determined. Finally, the dynamics of changes in the paramete... V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov Institute of Physics (IOP) 1757-8981 17578981 1757-899X 1757899X |
shingle_catch_all_2 | Peculiarities of precision space platform design for navigation satellites Space radio navigation combines the latest achievements of computer and telecommunication technologies. The symbiosis of navigation satellite system, modern radio communication and electronic cartography allows to determine the location and speed of a moving vehicle, calculate distances, develop efficient routes, monitor compliance, get information about cartographic objects. There are now two systems available: GPS (US) and GLONASS (Russia). Using both systems ensures more accurate determination of the coordinates of moving objects. The article deals with the issues related to the creation of a new type of space platform for navigation spacecrafts, namely, a precision space platform. The design requirements for precision space platforms of the navigation satellite are considered. The principles of designing the elements of precision platform that meet the requirements of a navigation satellite in terms of accuracy are determined. Finally, the dynamics of changes in the paramete... V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov Institute of Physics (IOP) 1757-8981 17578981 1757-899X 1757899X |
shingle_catch_all_3 | Peculiarities of precision space platform design for navigation satellites Space radio navigation combines the latest achievements of computer and telecommunication technologies. The symbiosis of navigation satellite system, modern radio communication and electronic cartography allows to determine the location and speed of a moving vehicle, calculate distances, develop efficient routes, monitor compliance, get information about cartographic objects. There are now two systems available: GPS (US) and GLONASS (Russia). Using both systems ensures more accurate determination of the coordinates of moving objects. The article deals with the issues related to the creation of a new type of space platform for navigation spacecrafts, namely, a precision space platform. The design requirements for precision space platforms of the navigation satellite are considered. The principles of designing the elements of precision platform that meet the requirements of a navigation satellite in terms of accuracy are determined. Finally, the dynamics of changes in the paramete... V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov Institute of Physics (IOP) 1757-8981 17578981 1757-899X 1757899X |
shingle_catch_all_4 | Peculiarities of precision space platform design for navigation satellites Space radio navigation combines the latest achievements of computer and telecommunication technologies. The symbiosis of navigation satellite system, modern radio communication and electronic cartography allows to determine the location and speed of a moving vehicle, calculate distances, develop efficient routes, monitor compliance, get information about cartographic objects. There are now two systems available: GPS (US) and GLONASS (Russia). Using both systems ensures more accurate determination of the coordinates of moving objects. The article deals with the issues related to the creation of a new type of space platform for navigation spacecrafts, namely, a precision space platform. The design requirements for precision space platforms of the navigation satellite are considered. The principles of designing the elements of precision platform that meet the requirements of a navigation satellite in terms of accuracy are determined. Finally, the dynamics of changes in the paramete... V E Kosenko, V D Zvonar, M A Ilin, V E Chebotarev and A A Frolov Institute of Physics (IOP) 1757-8981 17578981 1757-899X 1757899X |
shingle_title_1 | Peculiarities of precision space platform design for navigation satellites |
shingle_title_2 | Peculiarities of precision space platform design for navigation satellites |
shingle_title_3 | Peculiarities of precision space platform design for navigation satellites |
shingle_title_4 | Peculiarities of precision space platform design for navigation satellites |
timestamp | 2025-06-30T23:37:32.070Z |
titel | Peculiarities of precision space platform design for navigation satellites |
titel_suche | Peculiarities of precision space platform design for navigation satellites |
topic | ZL |
uid | ipn_articles_6363621 |