Journal of Applied Engineering Science
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2019, vol. 17, br. 4, str. 585-589
Modified method of a path planning on a local maps for transport and aerospace robots
(naslov ne postoji na srpskom)
Southwest State University, Kursk, Russian Federation

The research is performed within a State Assignment in 2019 (№2.9102.2017/BCH)

Ključne reči: robotics; planning; Path; modification; maps; serospace; additives
(ne postoji na srpskom)
In this paper we consider the modification of the method of planning the A-star path for transport and aerospace robots. It is necessary to take into account obstacles in the local neighborhood of aerospace robot, but not sufficient for the rational path planning. The essence of the modification is to use additional information about the features of original cell array. This additional information is represented by binary flags. They represent obstacle-free rows and matrix columns. The modification allows you to build paths that include straight sections of free cells. The main feature of this method is the use of bitwise logical operations on cell values.
Avdeev, V.O., Kurochkin, A.G., Lotorev, P.V., Titenko, E.A. (2016) Modified method and algorithm with iterative deepening for work a route through of the cells matrix. Information-measuring and control systems, vol. 14, no. 10, 46-50
Delling, D., Sanders, P., Schultes, D., Wagner, D. (2009) Engineering route planning algorithms: Algorithmic of large and complex networks. Springer
Germanovitch, V.A., Gennadievitch, S.E. (2018) Autonomous navigation and attitude control of spacecraft's on near-earth circular orbits. Journal of Applied Engineering Science, vol. 16, br. 1, str. 107-110
Kazakov, K.A., Semenov, V.A. (2016) Review of modern methods of traffic planning. Papers of the Institute of system programming RAS, vol. 28, no. 4, 241-296
Kolmykova, T.S., Merzlyakova, E.A., Bredikhin, V.V., Tolstykh, T.O., Ovchinnikova, O.P. (2018) Problems of formation of perspective growth points of high-tech productions. Advances in Intelligent Systems and Computing, 622, 469-475
Psychopop, V.H. (2009) Position-trajectory control of mobile objects. Taganrog: Publishing house TRTU
Shi, S., Walford, N. (2012) Automated geoprocessing mechanism, processes and workflow for seamless online integration of geodata services and creating geoprocessing services. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 5(6), 1659-1664
Titenko, E.A., Katykhin, A.I., Kurochkin, A.G., Lotorev, P.V., E.Skopin, D., Pykhtin, A.I. (2019) Multilayer geoinformation data access and representation model. Journal of Engineering and Applied Sciences, 14(18), 6753-6757
Vladimirovna-Bredikhina, N. (2017) Basic principles of production-and-technical potential capacity formation in the construction industry of a region. Journal of Applied Engineering Science, vol. 15, br. 4, str. 495-497
Wu, H., Yeh, M., Chen, M. (2013) Profiling moving objects by dividing and clustering trajectories spatiotemporally. Transactions on Knowledge and Data Engineering, 25(11), 2615-2628

O članku

jezik rada: engleski
vrsta rada: izvorni naučni članak
DOI: 10.5937/jaes17-23621
objavljen u SCIndeksu: 20.12.2019.
metod recenzije: dvostruko anoniman
Creative Commons License 4.0

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