Systems Engineering and Electronics ›› 2026, Vol. 48 ›› Issue (8): 2821-2832.doi: 10.12305/j.issn.1001-506X.2026.08.27
• Guidance, Navigation and Control • Previous Articles
Dongdong YAO1, Jianghua ZHOU1, Qunli XIA2, Jiawen XIE1,3
Received:2025-04-21
Revised:2025-06-04
Online:2025-12-12
Published:2025-12-12
Contact:
Dongdong YAO
CLC Number:
Dongdong YAO, Jianghua ZHOU, Qunli XIA, Jiawen XIE. Minimum principle penetration guidance for hypersonic morphing vehicle with interior point constraints[J]. Systems Engineering and Electronics, 2026, 48(8): 2821-2832.
| 1 | 任春艳, 刘颖, 张迁, 等. 2022年国外高超声速空面导弹发展动态研究[J]. 航空兵器, 2023, 30 (6): 18- 26. |
| REN C Y, LIU Y, ZHANG Q, et al. Research on fortign air-to-ground hypersonic missile development in 2022[J]. Aero Weaponry, 2023, 30 (6): 18- 26. | |
| 2 | 武嘉明, 王俊伟, 李向阳. 美空射高超声速武器发展分析[J]. 战术导弹技术, 2024 (4): 123- 128. |
| WU J M, WANG J W, LI X Y. Analysis on the development of U. S. air-launched hypersonic weapons[J]. Tactical Missile Technology, 2024 (4): 123- 128. | |
| 3 | BRIAN G, ROBERTO F. Terminal adaptive guidance for autonomous hypersonic strike weapons via reinforcement Metalearning[J]. Journal of Spacecraft and Rockets, 2023, 60 (1): 13. |
| 4 | 赵亮博, 朱广生, 张耀, 等. 智能飞行器追逃博弈中的关键技术及发展趋势[J]. 飞航导弹, 2021 (12): 134- 139. |
| ZHAO L B, ZHU G S, ZHANG Y, et al. Key technologies and development trends of intelligent aircraft pursuit and escape game[J]. Aeronautical Missile, 2021 (12): 134- 139. | |
| 5 |
刘冰雁, 叶雄兵, 岳智宏, 等. 基于多组并行深度Q网络的连续空间追逃博弈算法[J]. 兵工学报, 2021, 42 (3): 663- 672.
doi: 10.3969/j.issn.1000-1093.2021.03.024 |
|
LIU B Y, YE X B, YUE Z L, et al. Continuous space pursuit-evasion game algorithm based on multi-group deep q network[J]. Acta Armamentarii, 2021, 42 (3): 663- 672.
doi: 10.3969/j.issn.1000-1093.2021.03.024 |
|
| 6 | JACOB T E, JAY P W. Defender-aware attacking guidance policy for the target-attacker-defender differential game[J]. Journal of Aerospace Information Systems, 2021, 18 (6): 322- 390. |
| 7 | 倪炜霖, 王永海, 徐聪, 等. 基于强化学习的高超飞行器协同博弈制导方法[J]. 航空学报, 2023, 44 (S2): 729400. |
| NI W L, WANG Y H, XU C, et al. Hypersonic vehicle cooperative game guidance method based on reinforcement learning[J]. Acta Aeronautica et Astronautica Sinica, 2023, 44 (S2): 729400. | |
| 8 | 郭行. 高超声速飞行器博弈突防策略研究[D]. 西安: 西北工业大学, 2018. |
| GUO X. Penetration game strategy for hypersonic vehicles[D]. Xi’an: Northwestern Polytechnical University. 2018. | |
| 9 | 王子瑶, 唐胜景, 郭杰, 等. 高超声速攻防博弈自适应微分对策三维制导[J]. 兵工学报, 2023, 44 (8): 2342- 2353. |
| WANG Z Y, TANG S J, GUO J, et al. Adaptive 3-dimensional differential game guidance for hypersonic attack and defense[J]. Acta Armamentarii, 2023, 44 (8): 2342- 2353. | |
| 10 |
ADI M, VITALY S. Linear quadratic differential games guidance law with an intercept angle constraint and varying speed adversaries[J]. Journal of Guidance, Control, and Dynamics, 2022, 45 (11): 1980- 2201.
doi: 10.2514/6.2023-2495 |
| 11 | VITALY S. Optimal cooperative guidance laws in a multiagent target-missile-defender engagement[J]. Journal of Guidance, Control, and Dynamics, 2019, 42 (9): 1899- 2142. |
| 12 |
VLADIMIR T, TAL S. Target evasion from a missile performing multiple switches in guidance law[J]. Journal of Guidance, Control, and Dynamics, 2016, 39 (10): 2205- 2468.
doi: 10.2514/1.g000461 |
| 13 | MARTIN W, TAL S. Minimum effort pursuit/evasion guidance with specified miss distance[J]. Journal of Guidance, Control, and Dynamics, 2016, 39 (5): 985- 1172. |
| 14 | VLADIMIR T, MARTIN W, TAL S. A combined linear–quadratic/bounded control differential game guidance law[J]. IEEE Trans. on Aerospace and Electronic Systems, 2021, 57 (5): 3452- 3462. |
| 15 | MEIR H, AMIRAM M, DAVID A. Rationalizable strategies for the navigator-target-missile game[J]. Journal of Guidance, Control, and Dynamics, 2020, 43 (6): 1039- 1224. |
| 16 | SASWAT P N, ADITYA P R, MANGAL K. Inverse geometric guidance strategy for a three-body differential game[C]//Proc. of the AIAA Scitech 2021 Forum, 2021. |
| 17 | AUSTIN A P, JESSE R M, ROBERT E R. Mach 5–3.5 morphing wave-rider accuracy and aerodynamic performance evaluation[J]. Journal of Aircraft, 2019, 56 (5): 2047- 2061. |
| 18 | CHEN H L, WANG P, TANG G J. Fuzzy disturbance observer-based fixed-time sliding mode control for hypersonic morphing vehicles with uncertainties[J]. IEEE Trans. on Aerospace and Electronic Systems, 2023, 59 (4): 3521- 3530. |
| 19 | YAO Z, WU S T. Intermittent gliding flight control design and verification of a morphing unmanned aerial vehicle[J]. IEEE Access, 2021, 7, 40991- 41005. |
| 20 | 吴世超. 全速域乘波飞行器变体气动布局设计技术研究[D]. 长沙: 国防科技大学, 2021. |
| WU S C. Aerodynamic layout design on deformation of waverider in full speed domain[D]. Changsha: National University of Defense Technology, 2021. | |
| 21 | WEI C Z, JU X Z, HE F Y, et al. Research on non-stationary control of advanced hypersonic morphing vehicles[C]//Proc. of the 21st AIAA International Space Planes and Hypersonics Technologies Conference, 2017. |
| 22 |
DAI P, YAN B B, LIU R F, et al. Integrated morphing strategy and trajectory optimization of a morphing waverider and its online implementation based on the neural network[J]. IEEE Access, 2021, 9, 59383- 59393.
doi: 10.1109/ACCESS.2021.3073207 |
| 23 |
YAO D D, XIA Q L. Predictor–corrector guidance for a hypersonic morphing vehicle[J]. Aerospace, 2023, 10 (9): 795.
doi: 10.3390/aerospace10090795 |
| 24 | 万泱泱, 郭杰, 王浩凝, 等. 落角约束下的高超声速变体飞行器末制导方法[J]. 飞行力学, 2024, 42 (1): 24- 31. |
| WAN Y Y, GUO J, WANG H N, et al. Terminal guidance with impact angle constraints for hypersonic morphing vehicle[J]. Flight Dynamics, 2024, 42 (1): 24- 31. | |
| 25 |
张远, 黄万伟, 聂莹, 等. 一种高速可变形飞行器智能变形决策方法[J]. 宇航学报, 2022, 43 (12): 1665- 1675.
doi: 10.3873/j.issn.1000-1328.2022.12.008 |
|
ZHANG Y, HUANG W W, NIE Y, et al. An intelligent deformation decision making method for high speed morphing flight vehicle[J]. Journal of Astronautics, 2022, 43 (12): 1665- 1675.
doi: 10.3873/j.issn.1000-1328.2022.12.008 |
|
| 26 | 王仰杰, 龙腾, 李俊志, 等. 高超变体飞行器再入轨迹罚函数序列凸规划[J]. 北京航空航天大学学报, 2025, 51 (5): 1747- 1759. |
| WANG Y J, LONG T, LI J Z, et al. Reentry trajectory planning for hypersonic morphing vehicles using penalty sequence convex programming[J]. Journal of Beijing University of Aeronautics and Astronautics, 2025, 51 (5): 1747- 1759. | |
| 27 | PING L. Entry guidance: a unified method[J]. Journal of Guidance, Control, and Dynamics, 2014, 37 (3): 713- 728. |
| 28 |
DAI P, YAN B B, HUANG W, et al. Design and aerodynamic performance analysis of a variable-sweep-wing morphing waverider[J]. Aerospace Science and Technology, 2020, 98, 105703.
doi: 10.1016/j.ast.2020.105703 |
| 29 | 钟宜生. 最优控制[M]. 北京: 清华大学出版社, 2015. |
| ZHONG Y S. Optimal control[M]. Beijing: Tsinghua University Press, 2015. | |
| 30 |
SINHA A, KUMAR S R. Three-dimensional nonlinear cooperative salvo using event-triggered strategy[J]. Journal of Guidance, Control, and Dynamics, 2020, 44 (2): 328- 342.
doi: 10.2514/1.g005367 |
| 31 | WANG N Y, WANG X G, BIN E , et al. Three-dimensional adaptive dynamic surface guidance law for missile with terminal angle and field-of-view constraints[J]. ISA Transactions, 2024, 154, 113- 131. |
| 32 |
ZHENG Z W, LI J Z, FEHAN M. Three-dimensional terminal angle constraint guidance law with class function-based adaptive sliding mode control[J]. Aerospace Science and Technology, 2024, 147, 109005.
doi: 10.1016/j.ast.2024.109005 |
| [1] | Yiheng LI, Qunli XIA, Mingkai WANG. Prescribed performance control of hypersonic morphing vehicle based on high-order fixed-time observer [J]. Systems Engineering and Electronics, 2025, 47(5): 1627-1637. |
| [2] | Shuaihao YAN, Mingying WEI, Yongbin ZHENG. Attitude control method of air defense missile based on large command change rate [J]. Systems Engineering and Electronics, 2024, 46(7): 2465-2474. |
| [3] | Yueqiang ZHAO, Shi AN, Qiang MAI, Qingyan XU, Yanan GUO. Effectiveness modeling of air defense missile weapon system based on ADC method [J]. Systems Engineering and Electronics, 2020, 42(9): 2003-2012. |
| [4] | Qingguo LIU, Xinxue LIU, Jian WU, Yaxiong LI. Optimization design for the parking orbit of a single space-to-ground vehicle [J]. Systems Engineering and Electronics, 2020, 42(1): 157-165. |
| [5] | DUAN Xiusheng, XU Gongguo, SHAN Ganlin. Solution to sensortarget assignment problem based on cooperative#br# memetic adaptive QPSO algorithm [J]. Systems Engineering and Electronics, 2016, 38(12): 2769-2776. |
| [6] | ZHAO Yueqiang1,2, MAI Qiang1, XU Qingyan3. Dependability modeling research of airdefense missile weapon systems [J]. Systems Engineering and Electronics, 2016, 38(12): 2777-2784. |
| [7] | ZHANG Da-yuan,LEI Hu-min,WU Ling,SHAO Lei,LI Jiong. A trajectory tracking guidance law based on sliding mode variable structure control [J]. Systems Engineering and Electronics, 2014, 36(4): 721-727. |
| [8] | TANG Su-yan, MEI Shan, ZHU Yi-fan, LEI Yong-lin, LI Qun. Distributed weapon target assignment algorithm based on extended contract net protocol [J]. Journal of Systems Engineering and Electronics, 2011, 33(3): 568-574. |
| [9] | ZHU Yi-fan, TANG Su-yan, YU Wen-guang, LI Qun, LEI Yong-lin. Conditional contract net protocol based distributed guide-weapon assignment algorithm [J]. Journal of Systems Engineering and Electronics, 2011, 33(12): 2672-2678. |
| [10] | CHEN Li-xin. Concept of virtual server and its application in evaluation of fire efficiency with great intercepting depth [J]. Journal of Systems Engineering and Electronics, 2011, 33(10): 2230-2233. |
| [11] | TANG Su-yan, YU Wen-guang, ZHU Yi-fan, LI Zhi-ping, QING Du-zheng. Agent-based simulation and analysis of networking air defense missile systems [J]. Journal of Systems Engineering and Electronics, 2010, 32(12): 2632-2637. |
| [12] | ZHANG Wu1, ZHAO Zong-gui2, ZHAO Feng1, LIU Min1. Analysis of influencing factors on the optimal observer trajectory in bearings-only tracking [J]. Journal of Systems Engineering and Electronics, 2010, 32(1): 67-71. |
| [13] | ZHANG Su, CHENG Qi-yue, WANG Ying-long. Coordination efficiency evaluating of air-defense missile composite group [J]. Journal of Systems Engineering and Electronics, 2009, 31(8): 1923-1926. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||