| 1 |
SHAO L, LEI H M, ZHAO J. Research progress in trajectory prediction for near space hypersonic vehicle[J]. Aero Weaponry, 2021, 28 (2): 34- 39.
doi: 10.12132/ISSN.1673-5048.2020.0138
|
| 2 |
李世杰, 雷虎民, 周池军, 等. 基于控制变量估计的高超声速再入滑翔目标轨迹预测算法[J]. 系统工程与电子技术, 2020, 42 (10): 2320- 2327.
|
|
LI S J, LEI H M, ZHOU C J, et al. Trajectory prediction algorithm for hypersonic reentry gliding target based on control variables estimation[J]. Systems Engineering and Electronics, 2020, 42 (10): 2320- 2327.
|
| 3 |
LI J, HE Y C, SHAO L, et al. Reentry glide vehicle trajectory prediction method via multidimensional intention fusion[J]. Aerospace Science and Technology, 2025, 159 (4): 109960.
|
| 4 |
王路, 邢清华, 毛艺帆. 基于升阻比变化规律的再入高超声速滑翔飞行器轨迹预测算法[J]. 系统工程与电子技术, 2015, 37 (10): 2335- 2340.
|
|
WANG L, XING Q H, MAO Y F. Trajectory prediction of reentry hypersonic glide vehicle based on changing rule of lift-drag ratio[J]. Systems Engineering and Electronics, 2015, 37 (10): 2335- 2340.
|
| 5 |
李明杰, 周池军, 雷虎民, 等. 基于控制参数估计的再入滑翔目标智能轨迹预测算法[J]. 系统工程与电子技术, 2023, 45 (1): 221- 233.
|
|
LI M J, ZHOU C J, LEI H M, et al. An intelligent trajectory prediction algorithm of reentry glide target based on control parameter estimation[J]. Systems Engineering and Electronics, 2023, 45 (1): 221- 233.
|
| 6 |
XU H, LIU Y J, XING Y Z, et al. Lateral maneuver discrimination for hypersonic glide vehicles: a hybrid approach combining model-driven and data-driven methods[J]. IEEE Sensors Journal, 2024, 24 (7): 11425- 11436.
doi: 10.1109/JSEN.2024.3364748
|
| 7 |
HU Y D, GAO C S, LI J L, et al. Novel trajectory prediction algorithms for hypersonic gliding vehicles based on maneuver mode on-line identification and intent inference[J]. Measurement Science and Technology, 2021, 32 (11): 115012.
doi: 10.1088/1361-6501/ac1284
|
| 8 |
XI Z F, KOU Y X, LI Z W, et al. Air combat target maneuver trajectory prediction based on robust regularized Volterra series and adaptive ensemble online transfer learning[J]. Defence Technology, 2023, 20 (1): 187- 206.
|
| 9 |
XIE Y F, ZHUANG X B, XI Z P, et al. Dual-channel and bidirectional neural network for hypersonic glide vehicle trajectory prediction[J]. IEEE Access, 2021, 9, 92913- 92924.
|
| 1 |
邵雷, 雷虎民, 赵锦. 临近空间高超声速飞行器轨迹预测方法研究进展[J]. 航空兵器, 2021, 28 (2): 34- 39.
doi: 10.12132/ISSN.1673-5048.2020.0138
|
| 10 |
LI M J, ZHOU C J, SHAO L, et al. An intelligent trajectory prediction algorithm for hypersonic glide targets based on maneuver mode identification[J]. International Journal of Aerospace Engineering, 2022, 2022 (1): 4625001.
|
| 11 |
CAI Y P, ZHUANG X B. Hypersonic glide vehicle trajectory prediction based on frequency enhanced channel attention and light sampling-oriented MLP network[J]. Defence Technology, 2025, 46 (4): 199- 212.
|
| 12 |
宋波涛, 许广亮. 基于LSTM与1DCNN的导弹轨迹预测方法[J]. 系统工程与电子技术, 2023, 45 (2): 504- 512.
|
|
SONG B T, XU G L. Missile trajectory prediction method based on LSTM and 1DCNN[J]. Systems Engineering and Electronics, 2023, 45 (2): 504- 512.
|
| 13 |
王江, 史元浩, 郭正玉, 等. 融合小波变换和LSTM的目标轨迹预测[J]. 电子测量与仪器学报, 2023, 37 (1): 204- 211.
|
|
WANG J, SHI Y H, GUO Z Y, et al. Target trajectory prediction by fusing wavelet decomposition and LSTM[J]. Journal of Electronic Measurement and Instrumentation, 2023, 37 (1): 204- 211.
|
| 14 |
韩春耀, 熊家军, 张凯, 等. 高超声速飞行器分解集成轨迹预测算法[J]. 系统工程与电子技术, 2018, 40 (1): 151- 158.
|
|
HAN C Y, XIONG J J, ZHANG K, et al. Decomposition ensemble trajectory prediction algorithm for hypersonic vehicle[J]. Systems Engineering and Electronics, 2018, 40 (1): 151- 158.
|
| 15 |
SCHMID P J. Dynamic mode decomposition of numerical and experimental data[J]. Journal of Fluid Mechanics, 2010, 656, 5- 28.
|
| 16 |
CHEN C Z, LIU S Y, ZHOU Z J, et al. Time series prediction of ship maneuvering motion based dynamic mode decomposition[J]. Ocean Engineering, 2023, 286, 115446.
|
| 17 |
SOLEDAD L C, JOSE M V. Higher order dynamic mode decomposition[J]. SIAM Journal on Applied Dynamic Systems, 2017, 16 (2): 882- 925.
doi: 10.1137/15M1054924
|
| 18 |
陈昌哲, 邹早建, 邹璐, 等. 基于高阶动态模态分解的波浪中船舶操纵运动时序预测[J]. 中国造船, 2023, 64(6): 216−224.
|
|
CHEN C Z, ZOU Z J, ZOU L, et al. Time series prediction of ship maneuvering motion in waves based on higher order dynamic mode decomposition[J], Shipbuilding of China, 2023, 64(6): 216−224.
|
| 19 |
CHEN C Z, LIU S Y, ZOU Z J, et al. Real-time prediction of ship maneuvering motion in waves based on an improved reduced-order model[J]. Ocean Engineering, 2024, 312, 119244.
|
| 20 |
CHEN C A, ZOU Z J, LIU S Y, et al. Time series prediction of ship maneuvering motion at sea based on higher order dynamic mode decomposition[J]. Ocean Engineering, 2025, 323, 120614.
doi: 10.1016/j.oceaneng.2025.120614
|
| 21 |
CLAINCHE L S, VEGA M J, SORIA J. Higher order dynamic mode decomposition of noisy experimental data: the flow structure of a zero-net-mass-flux jet[J]. Experimental Thermal and Fluid Science, 2017, 88 (1): 336- 353.
|
| 22 |
CHEN X, ZHU C, MA C, et al. Vortex-induced vibration of twin-box girder and its aerodynamic characteristics study based on high-order dynamic decomposition[J]. Journal of Wind Engineering & Industrial Aerodynamics, 2024, 249 (1): 105719.
|
| 23 |
LI K, UTYUZHNIKOV S. Prediction of wind energy with the use of tensor-train based higher order dynamic mode decomposition[J]. Journal of Forecasting, 2024, 43 (7): 2434- 2447.
doi: 10.1002/for.3126
|
| 24 |
JONES C N S, UTYUZHNIKOV S V. Application of higher order dynamic mode decomposition to modal analysis and prediction of power systems with renewable sources of energy[J]. International Journal of Electrical Power and Energy Systems, 2022, 138 (1): 107925.
|
| 25 |
韩春耀, 熊家军, 张凯, 等. 高超声速滑翔飞行器轨迹预测分析[J]. 火力与指挥控制, 2019, 44 (2): 80- 85+91.
doi: 10.3969/j.issn.1002-0640.2019.02.017
|
|
HAN C Y, XIONG J J, ZHANG K, et al. Trajectory prediction analysis for hypersonic glide vehicle[J]. Fire Control & Command Control, 2019, 44 (2): 80- 85+91.
doi: 10.3969/j.issn.1002-0640.2019.02.017
|
| 26 |
LI R X, JILKOV V. Survey of maneuvering target tracking. Part I: dynamic models[J]. IEEE Trans. on Aerospace and Electronic Systems, 2003, 39 (4): 1333- 1364.
doi: 10.1109/TAES.2003.1261132
|
| 27 |
BLOM H A P, BAR-SHALOM Y. The interacting multiple model algorithm for systems with Markovian switching coefficients[J]. IEEE Trans. on Automatic Control, 1988, 33 (8): 780- 783.
doi: 10.1109/9.1299
|
| 28 |
MATTEO D, ANDREA S, EMILIO C, et al. Time-series forecasting of ships maneuvering in waves via dynamic mode decomposition[J]. Journal of Ocean Engineering and Marine Energy, 2022, 8 (4): 471- 478.
doi: 10.1007/s40722-022-00243-0
|
| 29 |
PHILLIPS T H. A common aero vehicle (CAV) model, description, and employment guide[J]. Schafer Corporation for AFRL and AFSPC, 2003, 27: 1−12.
|
| 30 |
XIA W J, WANG P C, YAN X L, et al. Rapid and near-analytical planning method for entry trajectory under time and full-state constraints[J]. Aerospace, 2024, 11 (7): 580- 580.
doi: 10.3390/aerospace11070580
|