METHOD OF IDENTIFYING BALLISTIC TARGETS AND DETERMINING COORDINATES OF POINTS OF THEIR LAUNCH AND FALL FOR SCANNING RADAR STATIONS Russian patent published in 2017 - IPC G01S13/06 G01S13/52 

Abstract RU 2612029 C1

FIELD: radar ranging.

SUBSTANCE: invention relates to radar trajectory information processing devices and can be used for identification of aerial objects (AO) and determining the points of launch and fall in radar stations (RS) of scanning type. Technical result is achieved due to that determined is orientation of the vertical plane of launch in space. For this purpose found are parameters of the linear function of the target coordinates approximating projection onto the horizontal plane. Then within the found vertical plane of launch determined are parameters of the target altitude variation law, selected is approximation of either a ballistic curve considering the air resistance or of a parabola. Then calculated are values of error functions of the linear and ballistic or the parabolic approximations. Basing on the criterion of smallness of the error functions values the decision is taken on associating the target to the BT class. Performed is extrapolation of the built trajectory to the points of launch and fall for determining coordinates thereof.

EFFECT: achieved technical result of the invention is identification of ballistic targets (BT) class and locating coordinates of points of the BT launch and fall as per trajectory data obtained by scanning RS.

1 cl

Similar patents RU2612029C1

Title Year Author Number
DEVICE FOR DETERMINATION OF COORDINATES 2004
  • Isaeva N.P.
  • Kislitsyn V.Ju.
  • Krivoshchekov D.A.
  • Naumov S.V.
RU2265233C1
DEVICE FOR RECOGNITION OF TARGETS, WHICH ARE NOT OBJECTS OF RECONNAISSANCE 2019
  • Isaeva Natalya Pavlovna
  • Kislitsyn Vadim Yurevich
  • Volkov Sergej Anatolevich
RU2726189C1
METHOD FOR BALLISTIC TARGET RECOGNITION USING ESTIMATES OF FIRST AND SECOND RADIAL VELOCITY INCREMENTS 2022
  • Belonogov Petr Zoteevich
  • Belov Dmitrij Vladimirovich
  • Belous Rostislav Albertovich
  • Gordeev Valerij Mikhajlovich
  • Demidchik Igor Pavlovich
  • Klishin Dmitrij Olegovich
RU2793774C1
METHOD OF IDENTIFICATION OF CALIBRE OF SHOOTING ARTILLERY PIECE BY PARAMETERS OF SPECTRAL COMPONENTS OF PRECESSIONS AND NUTATIONS 2013
  • Rudianov Gennadij Vladimirovich
  • Mitrofanov Dmitrij Gennad'Evich
  • Pereverzev Mikhail Anatol'Evich
RU2553419C1
DEVICE FOR RECOGNIZING NONMANOEUVREING BALLISTIC TARGET BY FIXED SELECTION OF RANGE SQUARES 2016
  • Belonogov Petr Zoteevich
  • Bomshtejn Aleksandr Davidovich
  • Khmylov Evgenij Sergeevich
  • Belous Rostislav Albertovich
RU2626015C1
DEVICE FOR RECOGNITION OF FIRING SYSTEMS 2001
  • Isaeva N.P.
  • Naumov S.V.
  • Volkov S.A.
  • Sokolova E.A.
  • Kislitsyn V.Ju.
RU2231084C2
TARGET INDICATION RADAR SYSTEM 2005
  • Bachevskij Sergej Viktorovich
  • Borisov Evgenij Gennad'Evich
  • Egrushev Vladimir Evgen'Evich
  • Korolev Vadim Olegovich
  • Mashkov Georgij Mikhajlovich
RU2311659C2
METHOD OF FIGHTING ENEMY ARTILLERY 2018
  • Ageev Pavel Aleksandrovich
  • Vishnyakov Sergej Mikhajlovich
  • Gudkov Aleksej Aleksandrovich
  • Ivanov Andrej Anatolevich
  • Kozlov Sergej Yurevich
  • Kuzmin Vitalij Vladimirovich
  • Kudryavtsev Aleksandr Mikhajlovich
  • Smirnov Pavel Leonidovich
  • Udaltsov Nikolaj Petrovich
RU2694421C1
METHOD FOR TRACKING A CRUISE MISSILE WHEN ROUNDING THE TERRAIN IN VARIOUS TACTICAL SITUATIONS 2021
  • Filonov Andrej Aleksandrovich
  • Tezikov Andrej Nikolaevich
  • Skrynnikov Andrej Aleksandrovich
  • Boldinov Viktor Aleksandrovich
  • Fedotov Aleksandr Yurevich
  • Beloborodov Andrej Valentinovich
  • Khlopkov Mikhail Igorevich
  • Plaksov Roman Alekseevich
  • Popov Anton Olegovich
RU2760951C1
METHOD OF FIRING JET PROJECTILES MULTIPLE ARTILLERY ROCKET SYSTEM IN COUNTER-BATTERY CONDITIONS 2014
  • Akinshina Galina Nikolaevna
  • Volobuev Mikhail Fedorovich
  • Orlov Sergej Vladimirovich
  • Zamyslov Mikhail Aleksandrovich
  • Mikhajlenko Sergej Borisovich
  • Maltsev Aleksandr Mikhajlovich
RU2602162C2

RU 2 612 029 C1

Authors

Dates

2017-03-02Published

2016-02-09Filed