SELF-CONTAINED RADAR INSTALLATION FOR AERIAL TARGET SELECTION Russian patent published in 2014 - IPC G01S13/52 

Abstract RU 2533659 C1

FIELD: radio engineering, communication.

SUBSTANCE: continuous non-modulated radio frequency generator is used. A part of its signal, after amplification, is radiated by an antenna via the antenna switch to the surrounding space. If an object is detected using a reflected signal, the closing rate of short-range radar stations of the weapon and the object, using the Doppler frequency is estimated. Another part of the generator signal is modulated to short radio pulses that are then amplified by another amplifier and are radiated to the surrounding space through the same antenna switch. Continuous and pulse radio signals, reflected by the object, are fed to the short-range radar input of the device, allowing to estimate both the distance to the object, and the closing rate. The process of the distance and closing rate measurement is performed within three range gate pulses, formed by the short-range radar. A decision of whether a real target is present is made by the device only if the reflected signal is present in any one from the three or in two adjacent range gate pulses, and the closing rate value corresponds to the estimated one of a real target.

EFFECT: higher short range radar immunity to passive interference if no data is present as to the time and location of the real target appearance and relatively short interoperation time with the object detected.

2 dwg

Similar patents RU2533659C1

Title Year Author Number
METHOD AND APPARATUS FOR INDEPENDENT RADAR SELF-CORRECTION OF MISALIGNMENT WHEN SMALL-SIZE AIRCRAFT MEETS OBJECT AT FINAL FLIGHT PATH SEGMENT 2012
  • Klimashov Boris Mikhajlovich
  • Moshchenskij Jurij Vasil'Evich
RU2533660C2
ARRANGEMENT FOR MEASURING AN ANGLE OF ENCOUNTER OF AN ACTIVE RADAR WITH A CONCENTRATED AIR TARGET 2005
  • Klimashov Boris Mikhajlovich
  • Smagin Valerij Aleksandrovich
  • Zhmurov Denis Borisovich
  • Golubev Jurij Sergeevich
RU2292562C2
TARGET CLASS RECOGNITION METHOD AND DEVICE FOR REALISING SAID METHOD 2012
  • Efanov Vasilij Vasil'Evich
  • Muzhichek Sergej Mikhajlovich
  • Gavrilov Nikolaj Vital'Evich
RU2492503C1
RECOGNITION METHOD OF EXTENDED TARGET AS TO VELOCITY AND DEVICE FOR REALISATION THEREOF 2007
  • Vinokurov Vladimir Ivanovich
  • Vinokurov Dmitrij Vladimirovich
RU2359285C1
METHOD OF PREVENTION OF EMERGENCY COLLISION OF AIRCRAFT WITH MOUNTAINOUS TERRAIN AND DEVICE FOR REALIZATION OF THIS METHOD 2002
  • Klimashov B.M.
  • Klepov E.Ju.
RU2236695C2
METHOD FOR MEASURING MEETING ANGLE OF ACTIVE RADIO-LOCATOR AND A CONCENTRATED AIRBORNE TARGET 2005
  • Klimashov Boris Mikhajlovich
  • Smagin Valerij Aleksandrovich
  • Golubev Jurij Sergeevich
  • Klepov Evgenij Jur'Evich
RU2290661C2
METHOD OF DETECTION AND CLASSIFICATION OF SURFACE TARGETS 2005
  • Nikol'Tsev Vladimir Aleksandrovich
  • Korzhavin Georgij Anatol'Evich
  • Podoplekin Jurij Fedorovich
  • Simanovskij Igor' Viktorovich
  • Vojnov Evgenij Anatol'Evich
  • Itskovich Jurij Solomonovich
  • Konoplev Vladimir Alekseevich
RU2287840C1
SELF-DEFENSE SYSTEM OF VEHICLE 2002
  • Eliseev V.S.
  • Chekulaev V.V.
  • Chekulaev V.A.
RU2204108C1
VEHICLE SELF-DEFENSE SYSTEM 2004
  • Eliseev Vjacheslav Sergeevich
  • Chekulaev Vjacheslav Vladimirovich
  • Chekulaev Vladimir Aleksandrovich
  • Romanovskij Aleksandr Sergeevich
  • Shumeev Viktor Ivanovich
RU2286529C2
DISTURBANCE PARAMETRE MEASUREMENT DEVICE 2008
  • Rumjantsev Jurij Vladimirovich
  • Druzhevskij Sergej Anatol'Evich
  • Anosov Viktor Sergeevich
  • Chernjavets Vladimir Vasil'Evich
  • Zhil'Tsov Nikolaj Nikolaevich
  • Fedorov Aleksandr Anatol'Evich
  • Kolomyjtsev Anri Pavlovich
RU2384861C1

RU 2 533 659 C1

Authors

Klimashov Boris Mikhajlovich

Dates

2014-11-20Published

2013-04-09Filed