Browse > Article
http://dx.doi.org/10.12673/jant.2021.25.5.336

The Applicability of Avionics Simulation Model Framework by Analyzing the Performance  

Seo, Min-gi (Fixed Wing Drone System R&D Lab, LIG Nex1)
Cho, Yeon-je (Fixed Wing Drone System R&D Lab, LIG Nex1)
Shin, Ju-chul (Fixed Wing Drone System R&D Lab, LIG Nex1)
Baek, Gyong-hoon (Fixed Wing Drone System R&D Lab, LIG Nex1)
Kim, Seong-woo (Fixed Wing Drone System R&D Lab, LIG Nex1)
Abstract
Avionics corresponds to the brain, nerves and five senses of an aircraft, and consists of aircraft mounted electronic equipment of communication, identification, navigation, weapon, and display systems to perform flight and missions. It occupies about 50% of the aircraft system, and its importance is increasing as the technology based on the 4th industrial revolution is developed. As the development period of the aircraft is getting shorter, it is definitely necessary to develop a stable avionics SIL in a timely manner for the integration and verification of the avionics system. In this paper, we propose a method to replace the legacy SIL with the avionics simulation model framework based one and evaluate the framework based on the result of alternative application.
Keywords
Avionics simulation model framework; Discrete event system specification; System integration laboratory;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 K. T. Kim, J. C. Shin, and M. G. Seo, "Event-driven simulation method applicable to avionics system integration laboratory," in Proceedings of Korean Society for Aeronautical and Space Sciences 2020 Fall Conference, Jeju, pp. 1316-1317, 2020.
2 S. G. Yang, Y. J. Cho, K. Y. Jo, and C. M. Ryu, "Design of automatic model verification for system integration laboratory," Journal of Advanced Navigation Technology, Vol. 23, No. 5, pp. 361-366, Oct. 2019.
3 S. H. Han, "4th industry breakthrough avionics," in Proceedings of the Institute of Electronics Engineers of Korea Conference, Pusan, pp. 1456-1458, 2017.
4 Y. K. Kim, M. C. Kim, W. W. Choi, and W. S. Oh, "Development of the MEP integration test environment for surion," Journal of The Korean Society for Aeronautical and Space Sciences, Vol. 39, No. 7, pp.666-673, Jul. 2011.   DOI
5 W. H. Chang, J. S. Park, Y. W. Jo, and J. K. Byun, "Verification of hierarchically structured avionics system utilizing multi-mode system integration laboratory," Journal of The Korean Society for Aeronautical and Space Sciences, Vol. 45, No. 11, pp.998-1005, Nov. 2017.   DOI
6 M. G. Seo, J. C. Shin, G. H. Baek, and S. W. Kim, "Development of real time simulation environment based on DEVS formalism applicable to avionics system integration laboratory," Journal of Advanced Navigation Technology, Vol. 23, No. 5, pp. 345-351, Oct. 2019.   DOI
7 J. C. Shin, M. G. Seo, Y. J. Cho, G. H. Baek, and S. W. Kim, "Event-driven modeling and simulation method applicable to avionics system integration laboratory," Journal of Advanced Navigation Technology, Vol. 24, No. 3, pp. 184-191, Oct. 2020.   DOI
8 Y. J. Cho, S. W. Kim, and G. H. Baek, "Method of avionics system integration laboratory modeling based on DEVS formalism," in Proceedings of Korean Society for Aeronautical and Space Sciences 2020 Fall Conference, Jeju, pp. 713-714, 2020.