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http://dx.doi.org/10.6109/jkiice.2017.21.10.1873

Simulator Development of Wireless Avionics Intra-Communications  

Shin, Dong-Seong (Department of Radio and Information Communications Engineering, Chungnam National University)
Jung, Bang Chul (Department of Electronics Engineering, Chungnam National University)
Ban, Tae-Won (Department of Information and Communication Engineering, Gyeongsang National University)
Chang, Woohyuk (Agency for Defense Development)
Park, Pangun (Department of Radio and Information Communications Engineering, Chungnam National University)
Abstract
Recently, many researches have been conducted on the aviation industry to replace the wire harness cable between the avionics of the aircraft with the wireless network. In this paper, we present an Event-Based Simulator for Wireless Avionics Intra-Communications (ES-WAIC) that can verify core technologies of wireless networks and efficiently integrate different layers of the network. ES-WAIC is developed to enhance the readability between the real time control application developers of the higher layer and the network layer developers. Specifically, the practical implement relies on an event-based programming concept to increase portability and compatibility that can be applied to the realistic low-power wireless embedded networks. ES-WAIC implements the overall system layers including the wireless channel modeling of the 4.4GHz band, the physical layer, the medium access control, the network, and the application layer of wireless avionics intra-communications.
Keywords
Wireless Avionics Intra-Communication; Wireless Sensor and Actuator Networks; Wireless Networks; Event-Based Simulator;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 R. Samano-Robles, E. Tovar, J. Cintra and A. Rocha, "Wireless avionics intra-communications: Current trends and design issues," in Proceedings of the 11th International Conference on Digital Information Management, Porto, pp. 266-273, 2016.
2 ITU-R M.2283, Technical characteristics and spectrum requirements of Wireless Avionics Intra-Communications systems to support their safe operation, ITU, Geneva, Switzerland, 2013.
3 ITU-R M.2067, Technical characteristics and protection criteria for Wireless Avionics Intra-Communication systems, ITU, Geneva, Switzerland, 2014.
4 ITU-R M.2318, Consideration of the aeronautical mobile (route), aeronautical mobile, and aeronautical radio navigation services allocations to accommodate wireless avionics intra-communication, ITU, Geneva, Switzerland, 2014.
5 P. Park and W. Chang, "Performance Comparison of Industrial Wireless Networks for Wireless Avionics Intra-Communications," in IEEE Communications Letters, vol. 21, no. 1, pp. 116-119, Jan. 2017.   DOI
6 ITU-R M.2319, Compatibility analysis between wireless avionics intra-communication systems and systems in the existing services in the frequency band 4200-4400 MHz, ITU, Geneva, Switzerland, 2014.
7 D. Lee and K. Jang, "A Tree-based Greedy Algorithm for Minimum Power Broadcast in Wireless Networks," Journal of the Korea Institute of Information and Communication Engineering, vol. 21, no. 5, pp. 921-928, May 2017.   DOI
8 N. Raharya and M. Suryanegara, "Compatibility analysis of Wireless Avionics Intra Communications (WAIC) to radio altimeter at 4200 - 4400 MHz," in Proceedings of IEEE Asia Pacific Conference on Wireless and Mobile, Bali, pp. 17-22, 2014.