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@article{IZKAB_2011_1_a28, author = {A. G. Kuznetsov}, title = {Autonomous navigation of the pilotless aircraft}, journal = {News of the Kabardin-Balkar scientific center of RAS}, pages = {159--163}, publisher = {mathdoc}, number = {1}, year = {2011}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/IZKAB_2011_1_a28/} }
A. G. Kuznetsov. Autonomous navigation of the pilotless aircraft. News of the Kabardin-Balkar scientific center of RAS, no. 1 (2011), pp. 159-163. http://geodesic.mathdoc.fr/item/IZKAB_2011_1_a28/
[1] D. A. Forsait, Pons Zh. Kompyuternoe zrenie, Sovremennyi podkhod; Vilyams, M., 2004, 928 pp.
[2] N. V. Kim, Obrabotka i analiz izobrazhenii v sistemakh tekhnicheskogo zreniya, uchebn. posobie, Izd-vo MAI, M., 2001, 164 pp.
[3] N. V. Kim, S. Yu. Kosorukov, “Predvaritelnaya otsenka sobstvennykh koordinat bespilotnogo letatelnogo apparata na osnove situatsionnogo analiza izobrazhenii podstilayuschei poverkhnosti”, Sb. tezisov dokladov VIII Vserossiiskoi yubileinoi nauchno tekhnicheskoi konferentsii, Izd-vo MAI, M., 2010
[4] Yane B., Tsifrovaya obrabotka izobrazhenii, Tekhnosfera, 2007, 584 pp.
[5] N. V. Kim, A. G. Kuznetsov, S. Yu. Kosorukov, “Analiz dorozhnoi situatsii s ispolzovaniem sistem tekhnicheskogo zreniya”, Izvestiya YuFU, 2010, no. 3 | MR