METHOD OF AVIATION SURVEILLANCE AND DEVICE FOR ITS IMPLEMENTATION Russian patent published in 2023 - IPC G08G5/02 G01S13/74 G01S19/00 

Abstract RU 2808467 C1

FIELD: navigation.

SUBSTANCE: group of inventions relates to a method and device for monitoring the location of aircraft. To control the location of the observed object, signals about its location are transmitted from on-board systems and other necessary information, which is received at certain receiving points, where the transmitted data is isolated, complexly processed, in particular for the reliability of the data, data about the observed objects or a signal of their unreliability are displayed. The device comprises a satellite navigation system signal receiver (1), a transceiver for automatic dependent surveillance signals in broadcast mode (2), receiving ground stations for automatic dependent surveillance in broadcast mode (3), a surveillance data processing device 4), an air situation display system (5) , a set of automation tools for planning the use of airspace (6), aeronautical and planning data base (7), high-precision clocks (8), a meteorological information database (9), a pressure sensor (10), a temperature sensor (11), located near the reception ground station (3), temperature sensor (12) and barometric altimeter (13) located on the aircraft body, connected in a certain way.

EFFECT: accuracy of the received information about the location of the aircraft is improved, in particular in the event of failures in navigation services for the consumer of the global navigation satellite system.

2 cl, 1 dwg

Similar patents RU2808467C1

Title Year Author Number
METHOD FOR MONITORING AERODROME TRAFFIC AND DEVICE FOR ITS IMPLEMENTATION 2022
  • Plyasovskikh Aleksandr Petrovich
  • Knyazhskij Aleksandr Yurevich
  • Shcherbakov Egor Sergeevich
RU2785810C1
METHOD AND DEVICE FOR MONITORING THE RELIABILITY OF SURVEILLANCE INFORMATION 2022
  • Plyasovskikh Aleksandr Petrovich
  • Knyazhskij Aleksandr Yurevich
  • Shcherbakov Egor Sergeevich
RU2801584C1
DESCENDING SPACE OBJECTS OR THEIR DEVICES COORDINATES MONITORING IN THE EARTH ATMOSPHERE AND THEIR DISPATCHING CONTROL SYSTEM 2017
  • Markov Maksim Mikhajlovich
  • Korol Viktor Mikhajlovich
RU2659376C1
METHOD TO CONTROL PILOTLESS AIRCRAFT AND DEVICE TO THIS END 2008
  • Krasov Anatolij Ivanovich
  • Makeev Mikhail Igorevich
  • Pjatko Sergej Grigor'Evich
  • Smol'Nikova Marija Anatol'Evna
  • Tokarev Jurij Petrovich
  • Jumaev Konstantin Rustamovich
RU2390815C1
SYSTEM FOR CONTROL AND PREVENTION OF UNAUTHORISED FLIGHTS OF SMALL AIRCRAFTS IN AIRSPACE OF MAJOR CITIES AND CRUCIAL OBJECTS 2007
  • Urlichich Jurij Matehvich
  • Moiseenko Vladimir Pavlovich
  • Zakharova Natalija Jur'Evna
RU2343530C1
MOBILE RADIO COMMUNICATION SYSTEM 2020
  • Kejstovich Aleksandr Vladimirovich
  • Izmajlova Yana Alekseevna
RU2746148C1
UNMANNED AERIAL SYSTEMS IN GENERAL AIR SPACE AUTOMATED FLIGHTS MONITORING AND CONTROL METHOD 2018
  • Ilin Aleksandr Ivanovich
RU2674536C1
METHOD FOR REMOTE DETERMINATION OF THE COORDINATES OF THE LOCATION OF A GROUND (ABOVE-WATER) OBJECT 2020
  • Evdokimov Sergei Viktorovich
  • Platonov Aleksandr Lvovich
  • Lutkov Mikhail Sergeevich
  • Kushtanov Georgii Rinatovich
  • Sergeev Aleksei Igorevich
  • Ponomarev Andrei Vladimirovich
RU2749194C1
METHOD OF MONITORING BAROMETRIC HEIGHT SYSTEMATIC ERRORS BASED ON SPEED DATA 2018
  • Lebedev Boris Vasilevich
RU2687348C1
METHOD OF IMPROVING INTEGRITY OF OUTPUT SIGNALS OF ON-BOARD SATELLITE NAVIGATION RECEIVERS 2013
  • Zavalishin Oleg Ivanovich
  • Lebedev Boris Vasil'Evich
RU2541691C1

RU 2 808 467 C1

Authors

Plyasovskikh Aleksandr Petrovich

Korol Viktor Mikhajlovich

Knyazhskij Aleksandr Yurevich

Dates

2023-11-28Published

2023-03-20Filed