Systems Engineering and Electronics ›› 2023, Vol. 45 ›› Issue (11): 3616-3623.doi: 10.12305/j.issn.1001-506X.2023.11.29
• Guidance, Navigation and Control • Previous Articles Next Articles
Yuxin GAO, Chunsheng LIU
Received:
2022-06-09
Online:
2023-10-25
Published:
2023-10-31
Contact:
Chunsheng LIU
CLC Number:
Yuxin GAO, Chunsheng LIU. Differential game-based learning sliding mode guidance for non-affine missile system[J]. Systems Engineering and Electronics, 2023, 45(11): 3616-3623.
1 |
WANG C H , CHEN C Y , HUNG K N . Toward a new task assignment and path evolution (TAPE) for missile defense system (MDS) using intelligent adaptive SOM with recurrent neural networks (RNNs)[J]. IEEE Trans.on Cybernetics, 2015, 45 (6): 1134- 1145.
doi: 10.1109/TCYB.2014.2345791 |
2 |
WANG Y N , WANG H , LIN D F , et al. Nonlinear modified bias proportional navigation guidance law against maneuvering targets[J]. Journal of the Franklin institute, 2022, 359 (7): 2949- 2975.
doi: 10.1016/j.jfranklin.2022.02.012 |
3 |
SHIN H S , LI K B . An improvement in three dimensional pure proportional navigation guidance[J]. IEEE Trans.on Aerospace and Electronic Systems, 2021, 57 (5): 3004- 3014.
doi: 10.1109/TAES.2021.3067656 |
4 |
LEE S , CHO N . Inverse optimality of pure proportional navigation guidance for stationary targets[J]. Journal of Guidance, Control and Dynamics, 2021, 44 (11): 2081- 2090.
doi: 10.2514/1.G006018 |
5 |
MA M C , TAN L G , SONG S M . Three-dimensional sliding mode guidance law for maneuvering target with prescribed performance and input saturation[J]. Trans.of the Institute of Measurement and Control, 2021, 43 (5): 1176- 1190.
doi: 10.1177/0142331220972021 |
6 | LIU S X , YAN B B , ZHANG T , et al. Guidance law with desired impact time and FOV constrained for antiship missiles based on equivalent sliding mode control[J]. International Journal of Aerospace Engineering, 2021, 2021 (4): 9923332. |
7 | JI Y , LIN D F , WANG W , et al. Three-dimensional terminal angle constrained robust guidance law with autopilot lag consideration[J]. Aerospace Science and Technology, 2019, 86 (3): 160- 176. |
8 |
LI G L , XIN M , MIAO C X . Finite-time input-to-state stability guidance law[J]. Journal of Guidance, Control and Dynamics, 2018, 41 (10): 2199- 2213.
doi: 10.2514/1.G003519 |
9 |
SHEN Y H , CHEN M , ZHENG Z X , et al. Event-triggered-backstepping-based parallel approaching guidance method for maneuvering target interception[J]. Guidance, Navigation and Control, 2022, 2 (1): 2250005.
doi: 10.1142/S2737480722500054 |
10 | LI Z B , DONG Q L , ZHANG X Y , et al. Impact angle-constrained integrated guidance and control for supersonic skid-to-turn missiles using backstepping with global fast terminal sliding mode control[J]. Aerospace Science and Technology, 2022, 122 (3): 107386. |
11 |
SUN J L , LIU C S . Backstepping-based adaptive dynamic programming for missile-target guidance systems with state and input constraints[J]. Journal of the Franklin Institute, 2018, 355 (17): 8412- 8440.
doi: 10.1016/j.jfranklin.2018.08.024 |
12 | 王晓海, 孟秀云, 周峰, 等. 基于偏置比例导引的落角约束滑模制导律[J]. 系统工程与电子技术, 2021, 43 (5): 1295- 1302. |
WANG X H , MENG X Y , ZHOU F , et al. Sliding mode gui-dance law with impact angle constraint based on bias proportional navigation[J]. Systems Engineering and Electronics, 2021, 43 (5): 1295- 1302. | |
13 | 张跃坤, 贾晓洪, 张晓阳, 等. 基于有限时间收敛干扰观测器的探导控一体化设计[J]. 系统工程与电子技术, 2021, 43 (5): 1326- 1334. |
ZHANG Y K , JIA X H , ZHANG X Y , et al. Integrated design of detection guidance and control based on finite time disturbance observer[J]. Systems Engineering and Electronics, 2021, 43 (5): 1326- 1334. | |
14 |
SUN J L , LIU C S , ZHAO X . Backstepping-based zero-sum differential games for missile-target interception systems with input and output constraints[J]. IET Control Theory and Applications, 2018, 12 (2): 243- 253.
doi: 10.1049/iet-cta.2017.0501 |
15 |
DUAN D D , LIU C S , ZHANG S J . Robust optimal control for finite-horizon zero-sum differential games via a plug-n-play event-triggered scheme[J]. Journal of the Franklin Institute, 2020, 357 (10): 5989- 6017.
doi: 10.1016/j.jfranklin.2020.03.039 |
16 | 张浩, 张奕群, 张鹏飞. 拦截主动防御目标的微分对策制导律[J]. 系统工程与电子技术, 2021, 43 (5): 1335- 1345. |
ZHANG H , ZHANG Y Q , ZHANG P F . Differential game guidance law for interception the active defense target[J]. Systems Engineering and Electronics, 2021, 43 (5): 1335- 1345. | |
17 | 朱斌, 孙瑞胜, 陈洁卿, 等. 含有非匹配扰动和未知动态的非仿射系统滑模控制算法[J]. 控制理论与应用, 2021, 38 (6): 862- 870. |
ZHU B , SUN R S , CHEN J Q , et al. Sliding mode control for unknown non-affine system with mismatched disturbances[J]. Control Theory & Applications, 2021, 38 (6): 862- 870. | |
18 |
FAN B , YANG Q M , JAGANNATHAN S , et al. Output-constrained control of nonaffine multiagent systems with partially unknown control directions[J]. IEEE Trans.on Automatic Control, 2019, 64 (9): 3936- 3942.
doi: 10.1109/TAC.2019.2892391 |
19 |
SHI W X . Adaptive fuzzy output-feedback control for nonaffine MIMO nonlinear systems with prescribed performance[J]. IEEE Trans.on Fuzzy Systems, 2021, 29 (5): 1107- 1120.
doi: 10.1109/TFUZZ.2020.2969110 |
20 |
YANG Y , DONG Y . Distributed tracking control of a class of multi-agent systems in non-affine pure-feedback form under a directed topology[J]. IEEE/CAA Journal of Automatica Sinica, 2018, 5 (1): 169- 180.
doi: 10.1109/JAS.2017.7510382 |
21 |
WANG D , QIAO J F . Approximate neural optimal control with reinforcement learning for a torsional pendulum device[J]. Neural Networks, 2019, 117, 1- 7.
doi: 10.1016/j.neunet.2019.04.026 |
22 |
CAI Y L , ZHANG H G , ZHANG K , et al. Fuzzy adaptive dynamic programming-based optimal leader-following consensus for heterogeneous nonlinear multi-agent systems[J]. Neural Computing and Applications, 2020, 32, 8763- 8781.
doi: 10.1007/s00521-019-04263-0 |
23 |
ZHANG H G , QU Q X , XIAO G Y , et al. Optimal guaranteed cost sliding mode control for constrained-input nonlinear systems with matched and unmatched disturbances[J]. IEEE Trans.on Neural Networks and Learning Systems, 2018, 29 (6): 2112- 2126.
doi: 10.1109/TNNLS.2018.2791419 |
24 | UTKIN V , GULDNER J , SHI J . Sliding mode control in electro-mechanical systems[M]. Boca Raton, FL: CRC Press, 1999. |
25 |
GAO Y X , LIU C S , JIANG S , et al. Zero-sum differential games-based fast adaptive robust optimal sliding mode control design for uncertain missile autopilot with constrained input[J]. International Journal of Control, 2022, 95 (7): 1789- 1801.
doi: 10.1080/00207179.2021.1872802 |
26 | SUN J L , LIU C S . Distributed fuzzy adaptive backstepping optimal control for nonlinear multimissile guidance systems with input saturation[J]. IEEE Trans.on Fuzzy Systems, 2019, 27 (3): 447- 461. |
27 | GAO Y X , LIU C S , DUAN D D , et al. Distributed optimal event-triggered cooperative control for nonlinear multi missile guidance systems with partially unknown dynamics[J]. International Journal of Robust and Nonlinear Control, 2022, 32 (15): 8369- 8396. |
28 | LONG T , CAO Y , SUN J L , et al. Adaptive event-triggered distributed optimal guidance design via adaptive dynamic programming[J]. Chinese Journal of Aeronautics, 2022, 35 (7): 113- 127. |
29 | GARCIA E , DAVID W , CASBEER M , et al. Cooperative strategies for optimal aircraft defense from an attacking missile[J]. Journal of Guidance Control and Dynamics, 2015, 28 (8): 1510- 1520. |
30 | QI Z K , LIN D F . Design of guidance and control systems for tactical missiles[M]. Beijing: Beijing Institute of Technology Press, 2019. |
31 | 郭一军, 徐建明. 考虑执行器饱和补偿的移动机器人自适应积分滑模控制[J]. 重庆邮电大学学报(自然科学版), 2018, 30 (6): 855- 860. |
GUO Y J , XU J M . Adaptive integral sliding mode control of mobile robot with actuator saturation compensation[J]. Journal of Chongqing University of Posts and Telecommunications (Natural Science Edition), 2018, 30 (6): 855- 860. | |
32 | 李逃昌. 基于新型趋近律的非线性积分滑模控制方法[J]. 控制工程, 2019, 26 (11): 2031- 2035. |
LI T C . Nonlinear integral sliding mode control method based on new reaching law[J]. Control Engineering of China, 2018, 30 (6): 855- 860. | |
33 | HO Y C , BRYSON A E , BARON S . Differential games and optimal pursuit-evasion strategies[J]. IEEE Trans.on Automatic Control, 1965, 10 (4): 385- 389. |
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[2] | ZHAO Lin, ZHOU Junfeng, LIU Yuan, HAO Yong. Three body differential game approach of pursuit evasion defense in three dimensional space [J]. Systems Engineering and Electronics, 2019, 41(2): 322-335. |
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[4] | HUA Wen-hua, CHEN Xing-lin. Differential game guidance law for dual control missiles [J]. Journal of Systems Engineering and Electronics, 2011, 33(3): 627-632. |
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