1 |
赵仁星, 王玲, 冯明月, 等. "马赛克战"作战概念构想及对策分析[J]. 空天防御, 2021, 4(3): 48-54.
|
|
Zhao Renxing, Wang Ling, Feng Mingyue, et al. Analysis of Combat Concept of "Mosaic Warfare" and Countermeasures[J]. Air & Space Defense, 2021, 4(3): 48-54.
|
2 |
郭行, 符文星, 闫杰. 浅析美军马赛克战作战概念及启示[J]. 无人系统技术, 2020, 3(6): 92-106.
|
|
Guo Hang, Fu Wenxing, Yan Jie. Analysis and Inspiration of the U.S. Force's Concept of Mosaic Warfare[J]. Unmanned Systems Technology, 2020, 3(6): 92-106.
|
3 |
邵晨曦, 陈小齐, 王行甫, 等. 基于数据场的复杂网络节点影响力建模与仿真[J]. 系统仿真学报, 2020, 32(7): 1257-1266.
|
|
Shao Chenxi, Chen Xiaoqi, Wang Xingfu, et al. Modeling and Simulation on Influence of Complex Network Nodes Based on Data Field in[J]. Journal of System Simulation, 2020, 32(7): 1257-1266.
|
4 |
夏博远, 杨克巍, 杨志伟, 等. 基于杀伤网评估的装备组合多目标优化[J]. 系统工程与电子技术, 2021, 43(2): 399-409.
|
|
Xia Boyuan, Yang Kewei, Yang Zhiwei, et al. Multi-objective Optimization of Equipment Portfolio Based on Kill-web Evaluation[J]. Systems Engineering and Electronics, 2021, 43(2): 399-409.
|
5 |
Li Yaodong, Xiao Bing, Yu Jingtao. Modeling and Analysis of Mosaic Warfare System Based on Complex Network Theory[C]//International Conference on Intelligent Systems, Communications, and Computer Networks (ISCCN 2022). Bellingham: SPIE, 2022: 1233223.
|
6 |
李凯文, 张涛, 王锐, 等. 基于DRL的组合优化研究进展[J]. 自动化学报, 2021, 47(11): 2521-2537.
|
|
Li Kaiwen, Zhang Tao, Wang Rui, et al. Research Reviews of Combinatorial Optimization Methods Based on Deep Reinforcement Learning[J]. Acta Automatica Sinica, 2021, 47(11): 2521-2537.
|
7 |
Vinyals O, Fortunato M, Jaitly N. Pointer Networks[C]//Proceedings of the 28th International Conference on Neural Information Processing Systems. Cambridge: MIT Press, 2015: 2692-2700.
|
8 |
Bello I, Pham H, Le Q V, et al. Neural Combinatorial Optimization with Reinforcement Learning[EB/OL]. (2017-01-12) [2023-12-22]. .
|
9 |
Vaswani A, Shazeer N, Parmar N, et al. Attention Is All You Need[C]//Proceedings of the 31st International Conference on Neural Information Processing Systems. Red Hook: Curran Associates Inc., 2017: 6000-6010.
|
10 |
Kool Wouter, van Hoof Herke, Welling Max. Attention, Learn to Solve Routing Problems![EB/OL]. (2019-02-07) [2023-12-22]. .
|
11 |
Peng Yun, Choi B, Xu Jianliang. Graph Learning for Combinatorial Optimization: A Survey of State-of-the-art[J]. Data Science and Engineering, 2021, 6(2): 119-141.
|
12 |
Scarselli Franco, Gori Marco, Ah Chung Tsoi, et al. The Graph Neural Network Model[J]. IEEE Transactions on Neural Networks, 2009, 20(1): 61-80.
|
13 |
Kipf Thomas N, Welling Max. Semi-supervised Classification with Graph Convolutional Networks[EB/OL]. (2017-02-22) [2023-12-22]. .
|
14 |
Veličković Petar, Cucurull Guillem, Casanova Arantxa, et al. Graph Attention Networks[EB/OL]. (2018-02-04) [2023-12-22]. .
|
15 |
Ma Qiang, Ge Suwen, He Danyang, et al. Combinatorial Optimization by Graph Pointer Networks and Hierarchical Reinforcement Learning[C]//Proceedings of the 1st International Workshop on Deep Learning on Graphs: Methodologies and Applications. New York: AAAI, 2020.
|
16 |
Lei Kun, Guo Peng, Wang Yi, et al. Solve Routing Problems with a Residual Edge-graph Attention Neural Network[J]. Neurocomputing, 2022, 508: 79-98.
|
17 |
王耀祖, 尚柏林, 宋笔锋, 等. 基于杀伤链的作战体系网络关键节点识别方法[J]. 系统工程与电子技术, 2023, 45(3): 736-744.
|
|
Wang Yaozu, Shang Bailin, Song Bifeng, et al. Identification Method of Key Node in Operational System-of-systems Network Based on Kill Chain[J]. Systems Engineering and Electronics, 2023, 45(3): 736-744.
|
18 |
Hu Yaru, Zheng Jinhua, Zou Juan, et al. Dynamic Multi-objective Optimization Algorithm Based Decomposition and Preference[J]. Information Sciences, 2021, 571: 175-190.
|
19 |
Jiang Jing, Han Fei, Ling Qinghua, et al. Efficient Network Architecture Search via Multiobjective Particle Swarm Optimization Based on Decomposition[J]. Neural Networks, 2020, 123: 305-316.
|