STEMM Institute Press
Science, Technology, Engineering, Management and Medicine
Design of Airborne Data Link Communication System Based on IP/Non-IP Dual Stack
DOI: https://doi.org/10.62517/jes.202602205
Author(s)
Wenjing Yang
Affiliation(s)
The 10th Research Institute of CETC, Chengdu, Sichuan, China
Abstract
Aiming at the problem of information silos induced by protocol heterogeneity in airborne data links, this paper designs an airborne data link communication system supporting IP/Non-IP dual-stack communication. Through core technologies including dynamic protocol conversion and routing optimization, the system achieves efficient interconnection between legacy systems and next-generation networks. Experimental tests verify that the system performs excellently in terms of protocol switching latency and data throughput, which significantly improves the real-time performance and compatibility of airborne communication, and provides robust technical support for the integration of future avionics systems.
Keywords
IP/Non-IP Dual Stack; Airborne Data Link Communication System; Design
References
[1] Liu Y, Jin H, Yu Q. Research on transmission waveform structure and rate scaled of new generation data link//Proceeding of 2017 International Conference on in formation Science and Control Engineering. Changsha: IEEE, 2017: 1686-1689. [2] Qing L. IP communication architecture and over-head performance of heterogeneous tactical wireless network for air platforms. Telecommunication Engineering, 2019, 59(9): 1020-1025. [3] Yin H. Design of hydroacoustic data communication system based on carrier. Audio Engineering, 2025, 49(4): 67-69. [4] Wang W, Wang K, Fu X W. Design of visible light communication system based on VCSEL. Information Technology, 2025(7): 1-8. [5] Liang Z Y, Kuang J R, Dang T, et al. Design of wireless communication system for offshore converter station. Southern energy construction, 2024, 11(4): 88-101. [6] Chen Y. Design of communication system for aerial relay station UAV. Wireless Internet Science and Technology, 2025, 22(12): 54-57. [7] Xie H P, Wang H, Guo M. Design and implementation of convergent communication system in refining and chemical enterprise . Modern Information Technology, 2025, 9(14): 15-20. [8] Zhang G D, Wang X H, Liu X Y, et al. Design and research on WIFI6 wireless communication system under intelligent transformation of coal mine. China High-Tech, 2023(9): 47-49. [9] Hu Y W. Design and performance evaluation of 5G-based power distribution network automation communication system. China Broadband, 2023, 19(12): 55-57. [10]Wang H. Design and availability evaluation of next generation train control data communications system based on LTE-M. Urban rapid rail transit, 2023, 36(1): 156-167.
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