Ivan Ostroumov
Ivan OSTROUMOV D.Sc., Ph.D.
"Navigation is a process of movement. From one point to another in defined space. We live until we could navigate..." (Ivan Ostroumov)

Airplane Flight Phase Identification Using Maximum Posterior Probability Method

The flight of a civil airplane is supported by many different systems. However, during the flight pilots require different navigation and surveillance data to perform airplane guidance. Each flight phase requires the usage of different methods of guidance and maintaining a preplanned trajectory. Automatic flight phase identification is an important component of on-board data processing and in the ground surveillance data processing unit. In the paper we study plight phase identification using a probability-based approach. Flight phase is detected by vertical speed and current barometrical altitude by method of the maximum posterior probability. A normal probability density function is used as a conditional function due to the assumption of normal error distribution of barometrical sensor. The proposed approach has been verified with real traffic surveillance data obtained under automatic dependent surveillance-broadcast communication channel within Ukrainian airspace. Classification on four common flight phases of taxing, take-off, en-route, and landing is used. The proposed method guarantees flight phase recognition with a minimum risk of false detection and indicates well detection in case of gaps in data sets.

Kuzmenko N.S.
Ostroumov I.V.
Bezkorovainyi Y.
Averyanova Yu.
Larin V.
Sushchenko O.
Zaliskyi M.
Solomentsev O.
Language:
English
Type
Refereed Conference Proceedings
Firstpage Number
1
Lastpage Number
5
Keywords
data processing, surveillance data, airplane track, maximum posterior probability, barometrical altitude, ADS-B
Publisher
System Analysis & Intelligent Computing : SAIC 2022 3rd International Conference of IEEE
Year of publishing


Citation
DSTU
Kuzmenko N.S., Ostroumov I.V., Bezkorovainyi Y., Averyanova Yu., Larin V., Sushchenko O., Zaliskyi M., Solomentsev O. Airplane Flight Phase Identification Using Maximum Posterior Probability Method. System Analysis & Intelligent Computing : SAIC 2022 3rd International Conference of IEEE. 2022. P. 1-5. DOI: 10.1109/SAIC57818.2022.9922913.
IEEE
, , , , , , et al., "Airplane Flight Phase Identification Using Maximum Posterior Probability Method," System Analysis & Intelligent Computing : SAIC 2022 3rd International Conference of IEEE, , pp. 1-5, doi:10.1109/SAIC57818.2022.9922913.
Harvard
Kuzmenko N.S., Ostroumov I.V., Bezkorovainyi Y., Averyanova Yu., Larin V., Sushchenko O., Zaliskyi M., and Solomentsev O., 2022, 10. Airplane Flight Phase Identification Using Maximum Posterior Probability Method. In System Analysis & Intelligent Computing : SAIC 2022 3rd International Conference of IEEE (pp. 1-5).
Springer
Kuzmenko, N.S., Ostroumov, I.V., Bezkorovainyi, Y., Averyanova, Yu., Larin, V., Sushchenko, O., Zaliskyi, M., Solomentsev, O.: Airplane Flight Phase Identification Using Maximum Posterior Probability Method. In: System Analysis & Intelligent Computing : SAIC 2022 3rd International Conference of IEEE, pp. 1-5 (2022). doi:10.1109/SAIC57818.2022.9922913.
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Refereed Journal Publications (82), Refereed Conference Proceedings (93), Peer-Reviewed Articles, Published in Local Journals (43), Theses (58), Author's Licence (30), Patents (5), Books and Chapters (26), Full List of Publications (337), Co-authors, Co-author Network, Template of Ministry of Education and Science, Metrics in Scholar Databases