| 1 |
SI P, WU M J, HUO Y Q, et al. Investigation of a tube-launched unmanned aerial vehicle with a variable-sweep wing[J]. Drones, 2024, 8 (9): 474- 474.
|
| 2 |
TANG W, ZHANG Y, LI X. Aerodynamic optimization of swing-wing UAVs based on morphing wing technology[J]. Journal of Aerospace Engineering, 2024, 37 (2): 102- 115.
|
| 3 |
王颖, 李裕, 刘力, 等. 大长径比变后掠翼导弹的颤振特性分析[J]. 计算机仿真, 2024, 41 (4): 55- 58,493.
doi: 10.3969/j.issn.1006-9348.2024.04.010
|
|
WANG Y, LI Y, LIU L, et al. Vibration characteristics analysis of large aspect ratio variable sweep wing missiles[J]. Computer Simulation, 2024, 41 (4): 55- 58,493.
doi: 10.3969/j.issn.1006-9348.2024.04.010
|
| 4 |
李伟明, 孙瑞胜, 白宏阳, 等. 变后掠翼航弹最优弹道自适应滑模跟踪控制[J]. 系统工程与电子技术, 2015, 37 (2): 372- 378.
doi: 10.3969/j.issn.1001-506X.2015.02.23
|
|
LI W M, SUN R S, BAI H Y, et al. Adaptive sliding mode tracking control of optimal trajectory for cruise missiles with variable-swept wings[J]. Systems Engineering and Electronics, 2015, 37 (2): 372- 378.
doi: 10.3969/j.issn.1001-506X.2015.02.23
|
| 5 |
MASLOV M, PETROV A. Adaptive control of swing-wing aircraft based on differential game theory[J]. IEEE Trans. on Aerospace and Electronic Systems, 2024, 60 (1): 234- 248.
|
| 6 |
CHEN X M, MENG L S, LIU J J, et al. Attitude control of variable swept-wing aircraft: a novel composite control strategy[J]. Aerospace Science and Technology, 2025, 160 (5): 110043.
|
| 7 |
CAO R, LU K L . Trajectory tracking control of variable sweep aircraft based on reinforcement learning[J]. Biomimetics, 2024, 9(5): 263−267.
|
| 8 |
ÖZGE Ö Y, ALTAN K. A comparative study on the efficiencies of aerodynamic reduced order models of rigid and aeroelastic sweptback wings[J]. Aerospace, 2024, 11 (8): 616- 619.
doi: 10.3390/aerospace11080616
|
| 9 |
TIAN Y Z, ZHU Y, ZHAO Y J, et al. Optimal design and analysis of a deformable mechanism for a redundantly driven variable swept wing[J]. Aerospace Science and Technology, 2024, 146(3): 108993-108998.
|
| 10 |
BEI L, HUA L, HUA Z H, et al. Surrogate-based aerodynamic shape optimization of a sliding shear variable sweep wing over a wide Mach-number range with plasma constraint relaxation[J]. Structural and Multidisciplinary Optimization, 2023, 66 (3): 288- 293.
|
| 11 |
LI H Y, CHEN W S, FENG Y M, et al. Development of a novel high bandwidth piezo-hydraulic actuator for a miniature variable swept wing[J]. International Journal of Mechanical Sciences, 2023, 240(2): 107926−107929.
|
| 12 |
LI Y, YI L, AO Y T, et al. Simulation analysis the aerodynamic characteristics of variable sweep wing missile[C] //Proc. of the 3rd International Conference on Avanced Algorithms and Control Engineering, 2020: 1570−1571.
|
| 13 |
CHEN G, SONG K Y, JIANG T J, et al. Experimental structural design of a novel variable-sweep wing based on a four-bar planar linkage[J]. Journal of Aerospace Engineering, 2024, 37(6): 330−339.
|
| 14 |
SU X B, JIANG W, ZHAO X W. Study on the influence of swept angle on the aerodynamic characteristics of the cross-section airfoil of a variable swept-wing aircraft[C] //Proc. of the 3rd International Conference on Aerospace Technology, Communications and Energy Systems, 2019: 685−689.
|
| 15 |
王江华, 谷良贤, 龚春林. 伸缩弹翼巡航导弹气动外形优化研究[J]. 飞行力学, 2009, 27 (6): 37- 40.
|
|
WANG J H, GU L X, GONG C L. Research on aerodynamic shape optimization of scalable wing cruise missile[J]. Flight Mechanics, 2009, 27 (6): 37- 40.
|
| 16 |
GAO L, ZHU Y H, ZANG X Z, et al. Dynamic analysis and experiment of multiple variable sweep wings on a tandem-wing MAV[J]. Drones, 2023, 7(9): 552−557.
|
| 17 |
ELELWI M, KUITCHE M, BOTEZ R, et al. Comparison and analyses of a variable span-morphing of the tapered wing with a varying sweep angle[J]. The Aeronautical Journal, 2020, 124(1278): 1146−1169.
|
| 18 |
刘天翔, 史金光, 赵新新, 等. 变外形滑翔制导炮弹的气动外形多目标优化[J]. 弹道学报, 2024, 36 (2): 29- 36.
doi: 10.12115/j.issn.1004-499X(2024)02-004
|
|
LIU T X, SHI J G, ZHAO X X, et al. Multi-objective optimization on aerodynamic shape of morphing gliding guided projectiles[J]. Journal of Ballistics, 2024, 36 (2): 29- 36.
doi: 10.12115/j.issn.1004-499X(2024)02-004
|
| 19 |
陈军, 王瑶, 余长浩, 等. 变后掠翼制导火箭弹气动特性分析与弹道优化[J]. 中国惯性技术学报, 2023, 31 (12): 1228- 1235.
|
|
CHEN J, WANG Y, YU C H, et al. Analysis of aerodynamic characteristics and trajectory optimization of variable-sweep wing guided rockets[J]. Journal of Chinese Inertial Technology, 2023, 31 (12): 1228- 1235.
|
| 20 |
王旭刚, 陈琦, 王中原. 远程变后掠翼巡航导弹多任务弹道设计及仿真[J]. 弹道学报, 2018, 30 (3): 13- 17,24.
|
|
WANG X G, CHEN Q, WANG Z Y. Multitask trajectory design and simulation for long-range swing-wing cruise missile[J]. Journal of Ballistics, 2018, 30 (3): 13- 17,24.
|
| 21 |
王娜, 陈洁卿, 明超, 等. 基于hp自适应伪谱法的变后掠翼导弹弹道优化设计[J]. 弹道学报, 2016, 28 (4): 24- 29.
doi: 10.3969/j.issn.1004-499X.2016.04.005
|
|
WANG N, CHEN J Q, MING C, et al. Optimization design for trajectory of morphing-wing missile based on hp-adaptive pseudo-spectral method[J]. Journal of Ballistics, 2016, 28 (4): 24- 29.
doi: 10.3969/j.issn.1004-499X.2016.04.005
|
| 22 |
黄明晗, 唐乾刚, 张青斌, 等. 高超声速变后掠翼战术导弹概念设计与弹道优化[J]. 战术导弹技术, 2016, (5): 10- 17,24.
|
|
HUANG M H, TANG Q G, ZHANG Q B, et al. Morphing swept wing tactical missile conceptual design and optimization trajectory of hypersonic vehicle[J]. Tactical Missile Technology, 2016, (5): 10- 17,24.
|
| 23 |
赵日, 孙瑞胜, 沈坚平. 变后掠翼制导炸弹滑翔弹道优化设计[J]. 航天控制, 2014, 32 (1): 16- 20.
doi: 10.3969/j.issn.1006-3242.2014.01.003
|
|
ZHAO R, SUN R S, SHEN J P. The optimization design of glide trajectory for guide bomb with morphing swept wings[J]. Aerospace Control, 2014, 32 (1): 16- 20.
doi: 10.3969/j.issn.1006-3242.2014.01.003
|
| 24 |
贾昂, 王旭刚, 李广才. 变体制导炮弹气动特性分析及弹道仿真[J]. 弹道学报, 2022, 34 (4): 74- 82.
|
|
JIA A, WANG X G, LI G C. Aerodynamic characteristics analysis and ballistic simulation of morphing guided projectile[J]. Journal of Ballistics, 2022, 34 (4): 74- 82.
|
| 25 |
雷娟棉, 吴甲生. 制导兵器气动特性工程计算方法[M]. 北京: 北京理工大学出版社, 2015.
|
|
LEI J M, WU J S. Engineering calculation methods for aerodynamic characteristics of guided weapons[M]. Beijing: Beijing Institute of Technology Press, 2015.
|
| 26 |
尹秋霖, 陈琦, 王中原, 等. 滑翔制导炮弹多炮齐射协同弹道规划与协作范围确定方法[J]. 系统工程与电子技术, 2024, 46 (9): 3139- 3149.
|
|
YIN Q L, CHEN Q, WANG Z Y, et al. Cooperative trajectory programming and cooperation range determination method for gliding-guided projectiles in multi- artillery-salvo-shooting scenario[J]. Systems Engineering and Electronics, 2024, 46 (9): 3139- 3149.
|
| 27 |
ZHOU Y H, CHEN C Y, YANG G L, et al. Direct trajectory optimization of macro-micro robotic system using a Gauss pseudospectral framework[J]. Robotics and Autonomous Systems, 2024, 175(5): 104676−104679.
|
| 28 |
QIU D Y, CHENG M L, YANG H, et al. Time-optimal trajectory planning for autonomous parking of tractor-semitrailer vehicle based on piecewise Gauss pseudospectral method[J]. Advances in Mechanical Engineering, 2023, 15(8): 1−17.
|
| 29 |
GAN W Y, SU L X, CHU Z Z. Trajectory planning of autonomous underwater vehicles based on Gauss pseudospectral method[J]. Sensors, 2023, 23(4): 2350.
|
| 30 |
LIU Y, LI C Y, ZHU X F, et al. Multi-scenario trajectory optimization for vertical takeoff and vertical landing vehicles using the Gauss pseudospectral method[J]. Aerospace, 2022, 9(11): 638.
|