IMPACT ASSESSMENT OF DATA SET PROCESSING REFUSAL ON TIME CHARACTERISTIC OF DATA PROCESSING BY AIR TRAFFIC IN ACS NETWORK

Main Article Content

Serhii Oberemok
Yurii Dolgiy
https://orcid.org/0000-0003-2441-0277
Sergeі Khmelevskіі
https://orcid.org/0000-0001-6216-3006
Serhii Rud

Abstract

During transfer of information in automated control system network by air traffic is a high probability of durable spike load. The purpose is to analyse influence of possible switching node faults on the basis of data transfer process time characteristic in error-control mode by receiver. It is shown that the increase of discard probability on interconnection node of communication reduce to increasing nondimensional average time of message delivery for wide parameter range and can reduce to complete cessation of information exchange. A probabilistic and temporal characteristic of supply control method of data set transfer in data-exchange network requires consideration of interconnection switching node. There is a necessity to consider both the existence of several data flows from other sources and possibility of fault occurrence in operation on each of switching nodes.

Article Details

How to Cite
Oberemok, S., Dolgiy, Y., Khmelevskіі S., & Rud, S. (2018). IMPACT ASSESSMENT OF DATA SET PROCESSING REFUSAL ON TIME CHARACTERISTIC OF DATA PROCESSING BY AIR TRAFFIC IN ACS NETWORK. Advanced Information Systems, 2(1), 43–46. https://doi.org/10.20998/2522-9052.2018.1.08
Section
Information systems research
Author Biographies

Serhii Oberemok, Flight Academy of the National Aviation University, Kropivnitskyi

postgraduate student

Yurii Dolgiy, Kharkiv National Air Force University named after Ivan Kozhedub, Kharkiv

Candidate of Technical Sciences, Associate Professor of the Department of Mathematical and Software ACS

Sergeі Khmelevskіі, Kharkiv National Air Force University named after Ivan Kozhedub, Kharkiv

Candidate of Science (Tech.), Senior Researcher, Head of the Language Training Center

References

Oberemok, S.O. (2018), “Model obrobky paketiv v komutatsiynykh vuzlakh z povnozvyaznoyu topolohiyeyu merezhi ASU povitryanym rukhom”, Systems of control, navigation and communication, PNTU, Poltava, Issue 1 (47), pp. 28-31.

Alekseyev, S.V. (2010), “Matematicheskaya model' protsessa peredachi dannykh cherez promezhutochnyye tsentry kommutatsii soobshcheniy dlya sluchaya primeneniya pomekhoustoychivogo koda v rezhime obnaruzheniya oshibok s proverkoy paketov poluchatelem”, Zbírnik naukovikh prats' KhUPS, KhUPS, Kharkiv, Issue 3 (25), pp. 123-125.

Oberemok, S.O. (2018), “Matematychna model protsesu peredachi danykh v rezhymi vyyavlennya pomylok otrymuvachem z urakhuvannyam vidmov na vuzlakh komutatsiyi v merezhakh ASU povitryanym rukhom”, Zbirnyk naukovykh prats NUOU, NUOU, Kyiv, Issue 4(31), pp. 78-83.

Shvartsman V.O. (2006), “Kachestvo uslug setey sleduyushchego pokoleniya”, Elektrosvyaz, No. 3, pp. 26-31.

Olifer, V. and Olifer, N. (2001), “Iskusstvo optimizatsii trafika”, LAN, No.12, pp. 38-47.

Nazarov, A.N. (2002), Modeli i metody raschota strukturno-setevykh parametrov setey ATM, Goryachaya liniya – Telekom, Moscow, 256 p.

Zitzler, E. (2012), “Evolutionary Multiobjective Optimization”, Handbook of Natural Computing, Springer-Verlag Berlin Heidelberg, pp. 871-904.

Keller, J., Liu, D. and Foge D. (2016), Fundamentals of Computational Intelligence: Neural Networks, Fuzzy Systems, and Evolutionary Computation, Hoboken, John Wiley & Sons Inc., NJ, 378 p.

Cencini, M., Cecconi, F. and Vulpiani A. (2010), Chaos: From Simple Models to Complex Systems, Hackensack, World Scientific, NJ, 460 p.

Walia, P. and Mehta, A. (2015), “Energy efficient geographic adaptive fidelity in wireless sensor networks”, IOSR Journal of Computer Engineering, Vol. 17, Issue 5, Ver. 1, pp. 46-55, doi: 10.9790/0661-17514655.