
A.N. Glushkov1, P.S. Margaryan2, E.A. Shipilova3
1–3 Military Educational and Scientific Center of the Air Force «Air Force Academy n. a. Professor N.E. Zhukovsky and Yu.A. Gagarin» (Voronezh, Russia)
1 angl243@yandex.ru, 2 margaryan.pasha@bk.ru, 3 elena_ship@list.ru
On the basis of model experiments, the way of assessing the direction of attack to the object in a group target with high-precision ammunition was analyzed according to the results of location measurements of the flight path section and extrapolation of the position of the ammunition in the picture plan of the target by means of polynomial smoothing of the measured values of coroinates filtered using the Kalian filter. Recommendation for the practical implementation on the method have been developed.
Problem statement a group goal includes "m" objects located at a distance of ∆ from each other. Based on location measurements, it is necessary to determine which of the objects is under attack. The purpose of the work is to study a method for determining OA in HZ based on location measurements of the coordinates of the AB trajectory and to develop practical recommendations for its implementation. Methods used: least squares method, Kalman filter. The novelty of the work consists in a new composition of the known results of polynomial smoothing and Kalman filtration in fast-moving processes in the interests of their study. Result: the reliability of the decisions made by estimating the probability of hitting the endpoint of the extrapolated trajectory of the attacking munition into the object of attack tends to 1.Practical significance: the work consists in the possibility of applying the results obtained to increase the effectiveness of protecting objects of group targets from high-precision weapons, by increasing the accuracy of aiming protective equipment at attacking ammunition, characterized by the accuracy of determining the direction to the object of attack.
Glushkov A.N., Margaryan P.S., Shipilova E.A. Modeling of the method of determining the object of attack in the group target the basis of location measurements of the trajectory of the attacking ammunition. Achievements of modern radioelectronics. 2024. V. 78.
№ 12. P. 46–55. DOI: https://doi.org/10.18127/ j20700784-202412-05 [in Russian]
- Utemov S.V. Zarubezhnye neavtonomnye optiko-elektronnye sistemy teleupravleniya vysokotochnym oruzhiem: Monografiya. Voronezh: Nauchnaya kniga. 2021. 214 s. [in Russian].
- Sil'nikov M.V., Lazorkin V.I. Aktivnaya zashchita mobil'nyh ob"ektov ot sredstv porazheniya s ispol'zovaniem raket malogo kalibra i shtatnyh puskovyh ustrojstv. Voprosy oboronnoj tekhniki. Cer. 16. Tekhnicheskie sredstva protivodejstviya terrorizmu. Vyp. 155–156. S. 68–75 [in Russian].
- Glushkov A.N., Margaryan P.S., Shipilova E.A. Fil'tr Kalmana v zadache opredeleniya ob"ekta ataki v gruppovoj celi vysokotochnym boepripasom. Izvestiya RA RAN. Vyp. № 4. S. 56–62 [in Russian].
- Glushkov A.N., Margaryan P.S., Shipilova E.A. Matematicheskaya model' sposoba opredeleniya ob"ekta ataki v gruppovoj celi. Voprosy oboronnoj tekhniki. Seriya 16. Tekhnicheskie sredstva protivodejstviya terrorizmu. 2023. Vyp. (5–6). S. 76–80 [in Russian].
- Gorshkov S.A., Zavizhenec V.N. Sintez Fil'tra Kalmana vtorogo poryadka pri nablyudenii. Doklady BGUIR. 2017. № 4 (106). S. 19–26 [in Russian].
- Balakrishnan A. V. Teoriya fil'tracii Kalmana: Per. s angl. M.: Mir. 1988. 68 s. [in Russian].
- Barabanov A.E. Linejnaya fil'traciya s adaptivnoj podstrojkoj matric kovariacij vozmushchenij v ob"ekte i shumov izmereniya. Avtomatika i telematika. 2016. № 1. S. 30–49 [in Russian].
- Matveev V.V. Inercial'nye navigacionnye sistemy. Tula: Izd-vo TulGU. 2012. 199 s. [in Russian].
- Bar-Shalom Ya., Li H-R. Traektornaya obrabotka. Principy, sposoby i algoritmy: Per. s angl. M.: MGTU im. N.E. Baumana. 2011. S. 271 [in Russian].
- Linnik Yu.V. Metod naimen'shih kvadratov i osnovy matematiko-statisticheskoj teorii obrabotki nablyudenij. M. 1962. 352 c. [in Russian].
- Farina A., Studer F. Cifrovaya obrabotka radiolokacionnoj informacii. M.: Radio i svyaz'. 1993. 320 c. [in Russian].