Analysis of the Development and Key Technologies of Missile-borne Integrated Avionics System
SHI Dashan, GE Yuhang, MENG Guangwei, JI Biao, CAI Kerong
Shanghai Electro-Mechanical Engineering Institute, Shanghai 201109, China
Abstract The missile-borne integrated avionics system determines the development of the electronic and electrical equipment of the missile. It can effectively improve integration, modularization, and miniaturization while reducing costs. This paper first introduced the concept and system composition of an integrated avionics system. Then, it summarized the development status domestically and abroad and expounded on the development trend and key technologies of missile-brone integrated avionics systems, including high-speed serial bus, time-sharing partition operating systems, and microsystem. Finally, the existing challenges and future development trends were summarized.
Key words :
missile-borne integrated avionics system
high-speed serial bus
operating system
microsystem
artificial intelligence
missile
Received: 27 April 2023
Published: 27 September 2023
[1]
ZHANG Di, WANG Hui, AN Guochen, GU Cunfeng, FAN Tianzheng. Application of Intelligent Perception in OODA Ring of Air Defense and Anti-Missile [J]. Air & Space Defense, 2024, 7(1): 1-5.
[2]
JIANG Ruimin, WANG Xuanling, ZHANG Mingen, ZHAO Bin. An Anti-ship Missile Route Planning Method Based on Quantum Genetic Algorithm [J]. Air & Space Defense, 2023, 6(4): 31-34.
[3]
KE Linda, ZHANG Xiaolong, CUI Zhe, GU Mingfeng, LAI Caifang, LIU Yong. Review of Missile Structural Optimization Design for Additive Manufacturing [J]. Air & Space Defense, 2023, 6(2): 28-34.
[4]
LI Yin, GUO Jianbin, ZHANG Shaowei, WANG Kunyun, CI Huipeng. Safety Modeling Method of Human-Machine System Based-on JACK and Situation Awareness [J]. Air & Space Defense, 2023, 6(1): 29-37.
[5]
ZHANG Wei, ZHANG Xuecheng, SUN Xuning, LIU Zhao, CHENG Yuebing, SHU Peng. Promoting the Development of Overhaul of Air Defense Missile Weapon by Technology Upgrade [J]. Air & Space Defense, 2022, 5(4): 82-86.
[6]
LYU Shuo, ZHANG Qingzhen, GUO Yunhe, FENG Shuo. Attitude Control of Missile with Deflectable Nose Based on Backstepping Sliding Mode Control [J]. Air & Space Defense, 2022, 5(4): 30-37.
[7]
ZHANG Dayuan, JIANG Desheng, CHEN Guanyu, MENG Feixiang. Research on Evaluation Method of Surface-to-Air Missile System Survival Effectiveness Based on Remaining Operational Capability [J]. Air & Space Defense, 2022, 5(4): 24-29.
[8]
DENG Chen, KONG Yinan, WANG Qing, CHEN Gong. Research on Empirical Engineering Correction Algorithm Integrating Physical Laws [J]. Air & Space Defense, 2022, 5(3): 73-79.
[9]
GAO Changhao, SONG Wenping, HAN Shaoqiang, LU Kuan, WANG Yue, YE Kun. Research on Poststall Re-orientation Technology of Air-to-Air Missile [J]. Air & Space Defense, 2022, 5(3): 17-26.
[10]
ZHANG Shaoguang, XIAO Maochao, ZHANG Yufei, CHEN Haixin. Study on Perturbation Introduction Method of Asymmetric Vortex Simulation of Slender Body at High Angle of Attack [J]. Air & Space Defense, 2022, 5(3): 10-16.
[11]
SU Shan, XIE Yongji, BAI Yulian, LIU Yintian, SHAN Yongzhi. Research on Differential Game Cooperative Confrontation Guidance Law Method [J]. Air & Space Defense, 2022, 5(2): 58-64.
[12]
LIU Shuangxi, WANG Yichong, ZHU Mengjie, LI Yong, YAN Binbin. Research on Differential Game Guidance Law for Intercepting Hypersonic Vehicles with Small Missile-to-Target Speed Ratio [J]. Air & Space Defense, 2022, 5(2): 49-57.
[13]
XIA Ming (夏明), XU Tianyi (徐天意), JIANG Hong∗ (姜虹). Progress and Perspective of Artificial Intelligence and Machine Learning of Prediction in Anesthesiology [J]. J Shanghai Jiaotong Univ Sci, 2022, 27(1): 112-120.
[14]
CHEN Ziyun (陈子云), XIE Le (谢叻), DAI Peidong (戴培东), ZHANG Tianyu (张天宇). Development of a Robotic Cochlear Implantation System [J]. J Shanghai Jiaotong Univ Sci, 2022, 27(1): 7-14.
[15]
LI Shaoyuan, YIN Xiang. Do Agent Self-Game and Learning Have Limitation of Performance? [J]. Journal of Shanghai Jiao Tong University, 2021, 55(Sup.1): 3-4.