METHOD AND SYSTEM FOR DETERMINING THE IONOSPHERE TRAVEL TIME ESTIMATION ERROR Russian patent published in 2017 - IPC G01S19/07 

Abstract RU 2630783 C2

FIELD: radio engineering, communication.

SUBSTANCE: method includes the first step of determining at least two points of ionosphere penetration by two visuality axes between the satellite and at least two ground stations. The method also includes the second step of determining at least one angle, formed by the segment, extending from the mentioned point of interest to one from the mentioned penetration points and the segment, extending from the mentioned point of interest to the other from the mentioned penetration points. The method also includes the third stage of determining the spatial spreading of penetration points regarding the above mentioned points of interest on the basis of the above mentioned corner, by the difference with the predetermined angle and getting the average value of the mentioned differences.

EFFECT: improvement of the evaluation accuracy of the ionosphere travel by the signal along the vertical axis of the visibility.

8 cl, 10 dwg

Similar patents RU2630783C2

Title Year Author Number
ADAPTIVE METHOD FOR ELECTRON CONTENT EVALUATION OF IONOSPHERE 2013
  • Trij Sebasten
  • Berten De Lya Oter Gonzag
  • Van Den Bosskhe Matias
RU2615172C2
DEVICE AND PROCESS OF RADIO POSITIONING 1996
  • Kinal Dzhordzh Vladimir
  • Nehjdzhl Ii Dzhejms Robert
  • Soddu Klaudio
  • R'Jan Fintehn Richard
RU2181490C2
TWO-FREQUENCY PHASE METHOD OF DETERMINING SIGNALS DELAY OF A NAVIGATION SATELLITE SYSTEM IN THE IONOSPHERE 2019
  • Kulichkov Kirill Anatolevich
  • Kulichkova Natalya Sergeevna
  • Grebennikov Andrej Vladimirovich
  • Zander Feliks Viktorovich
  • Kudrevich Aleksandr Pavlovich
RU2717098C1
NETWORK AND METHOD FOR CALCULATING IONOSPHERE CORRECTIONS 2009
  • Damido Zhan-Lui
  • Levi Zhan-Kristof
RU2497149C2
METHOD FOR IONOSPHERE RANGE ERROR DETECTION WITHIN TWO-FREQUENCY MEASUREMENTS 2005
  • Bezsmolyj Nikolaj Nikolaevich
  • Dubinko Tat'Jana Jur'Evna
  • Dubinko Jurij Sergeevich
  • Kuz'Mitskij Roman Leonidovich
RU2333507C2
METHOD, APPARATUS AND SYSTEM FOR DETERMINING POSITION OF OBJECT, HAVING GLOBAL NAVIGATION SATELLITE SYSTEM RECEIVER, BY PROCESSING NON-DIFFERENTIAL DATA, SIMILAR TO CARRIER PHASE MEASUREMENTS, AND EXTERNAL DATA SIMILAR TO IONOSPHERIC DATA 2011
  • Ehrnandes-Pakhares Manuehl'
  • Khuan Sornosa Khose Migel'
  • Sans Subirana Khaume
  • Samson Jaron
  • Tossajnt Mikhel Matias Marija
RU2565386C2
METHOD AND SYSTEM FOR NAVIGATION IN REAL TIME SCALE WHICH USE THREE CARRIER RADIO SIGNALS, TRANSMITTED BY SATELLITE, AND IONOSPHERE CORRECTIONS 2003
  • Ehrnandes-Pakhares Manuehl'
  • Khuan-Sornosa Khose Migel'
  • Sans-Subirana Khaume
  • Garsia-Rodriges Al'Berto
RU2318222C2
METHOD FOR SINGLE-POSITION DETERMINATION OF COORDINATES OF SOURCES OF HIGH-FREQUENCY RADIO WAVES DURING IONOSPHERIC PROPAGATION 2019
  • Razhev Aleksandr Nikolaevich
  • Kuzmin Aleksandr Vasilevich
  • Kudinov Sergej Viktorovich
RU2713188C1
METHOD OF PROCESSING RADIO-NAVIGATION SIGNALS 2008
  • Lorishess Denis
  • Mers'E Flav'En
RU2439616C2
DEVICE AND METHOD FOR REAL-TIME MONITORING OF INTEGRITY OF SATELLITE NAVIGATION SYSTEM 2009
  • Levi Zhan-Kristof
RU2501039C2

RU 2 630 783 C2

Authors

Trij Sebasten

Dates

2017-09-13Published

2013-11-28Filed