METHOD FOR OPTIMUM ADAPTATION OF AN AIR TARGET INTERCEPT ROUTE WHEN A GROUP OF AIR DEFENCE SYSTEMS IS IN THE AREA OF FLIGHTS Russian patent published in 2020 - IPC G05D1/12 

Abstract RU 2734171 C1

FIELD: automated control systems.

SUBSTANCE: invention relates to automated control systems and can be used in the interest of increasing the probability of intercepting an air target in the presence of ADS grouping in the area of flights. Algorithms are used to search for safe corridors of passage through a zone of defeat of group ADS, calculation of elements of optimal route for overcoming of ADS group strike zone and elements of optimal route of interception at specified approach algorithm with target. Method is based on formation of two types of possible routes calculated at different values of heading angle of speed of interceptor (ϕ) for known approach algorithms with the target (s1, s2, s3), as well as on determination in this group of optimally adapted intercept route providing minimum penetration of intercepted target into protected airspace. First type of possible routes includes routes of intercepting passing by the hazardous zone and not requiring adaptation, and to the second one – adapted composite routes M1 passing through the hazardous zone when using the safe corridor.

EFFECT: safety of overcoming the ADS group strike area and reduction of the air target penetration distance into the protected space.

1 cl, 7 dwg

Similar patents RU2734171C1

Title Year Author Number
METHOD FOR ADAPTIVE-ROUTE CONTROL OF MANNED AIRCRAFT 2013
  • Marusin Viktor Semenovich
  • Stoljarov Oleg Georgievich
  • Jaroshenko Sergej Vladimirovich
RU2568161C2
KINETIC WARHEAD WITH AERODYNAMIC GUIDANCE 2022
  • Gorshkov Aleksandr Aleksandrovich
RU2825027C2
TARGET DESTRUCTION METHOD BY VOLLEY OF ATMOSPHERIC AIRCRAFTS 2016
  • Leonov Aleksandr Georgievich
  • Efremov Gerbert Aleksandrovich
  • Asaturov Sergej Mikhajeli
  • Matrosov Andrej Viktorovich
  • Prokhorchuk Yurij Alekseevich
RU2691233C2
METHOD FOR CONTROLLING AERIAL TRAFFIC AND SYSTEM FOR REALIZATION OF SAID METHOD 2004
  • Fedosenko Oleg Fedorovich
  • Besschastnyj Aleksej Uvinal'Evich
  • Labenko Dmitrij Petrovich
  • Fedosenko Vladimir Olegovich
RU2280265C2
SPACE-AIR DEFENSE COMPLEX 2002
  • Vanin V.N.
RU2227892C1
METHOD FOR TARGETING HIGH-SPEED, HIGHLY MANEUVERABLE AIR OBJECTS 2020
  • Mikheev Vyacheslav Alekseevich
  • Merkulov Vladimir Ivanovich
  • Sadovskij Petr Alekseevich
  • Ivanov Igor Yurevich
RU2751378C1
METHOD FOR INTERCEPTING THE PRIORITY TARGETS WITH DISRUPTING THE GUIDANCE OF ACCOMPANYING FIGHTERS 2020
  • Verba Vladimir Stepanovich
  • Merkulov Vladimir Ivanovich
  • Zagrebelnyj Ilya Ruslanovich
  • Ievlev Daniil Igorevich
  • Milyakov Denis Aleksandrovich
RU2742737C1
COMPLEX ELECTRONIC DISPLAY SYSTEM FOR LIGHT MULTI- PURPOSE AIRCRAFT 2002
  • Efanov A.G.
  • Demchenko O.F.
  • Popovich K.F.
  • Shkolin V.P.
  • Suslov V.D.
  • Taskaev R.P.
  • Perminov A.G.
  • Nikitin V.N.
  • Sorokin V.F.
RU2219108C1
METHOD FOR CONTROLLING THE WEAPONRY OF MULTIFUNCTIONAL TACTICAL AIRCRAFTS AND SYSTEM FOR IMPLEMENTATION THEREOF 2020
  • Efanov Vasilij Vasilevich
RU2759057C1
METHOD FOR CONTROLLING THE WEAPONRY OF MULTIFUNCTIONAL TACTICAL AIRCRAFTS AND SYSTEM FOR IMPLEMENTATION THEREOF 2020
  • Efanov Vasilij Vasilevich
RU2757094C1

RU 2 734 171 C1

Authors

Ponomarev Oleg Pavlovich

Kuznetsov Aleksandr Nikolaevich

Marusin Viktor Semenovich

Savelev Aleksandr Egorovich

Stolyarov Oleg Georgievich

Udotova Larisa Valerianovna

Dates

2020-10-13Published

2020-04-29Filed