[1] 陈嘉勋,肖兵,刘凤增. 基于Agent的建模与仿真技术在军事系统中的应用综述[J]. 飞航导弹, 2019(8): 7176.
CHEN J X, XIAO B, LIU F Z. A review of agent-based modeling and simulation techniques in military systems[J]. Aerodynamic Missile Journal, 2019(8): 7176.
[2] 庞毅,孙青林,焦纲领, 等. 基于多Agent的舰艇编队对海攻击仿真系统[J]. 系统工程与电子技术, 2015, 37(10): 23962403.
PANG Y,SUN Q L,JIAO G L, et al. Warship formation anti-sea attack simulation system based on multi-agent[J]. Systems Engineering and Electronics, 2015, 37(10): 23962403.
[3] 蒲玮,李雄. 基于Agent行动图的作战建模方法[J]. 系统工程与电子技术, 2017, 39(4): 795805.
PU W,LI X. Research on warfare modeling method based on agent action diagrams[J]. Systems Engineering and Electronics, 2017, 39(4): 795805.
[4] 韩明磊,马晶,周泽宇, 等. 基于Agent建模的海战场杀伤链评估系统研究[J]. 计算机仿真, 2022, 39(3): 1116.
HAN M L,MA J,ZHOU Z Y, et al. Research on assessment system of kill chain in naval battlefield based on agent modeling[J]. Computer Simulation, 2022, 39(3): 1116.
[5] 冯进,朱江,沈寿林. 一种基于分层智能混合决策的多Agent框架[J]. 火力与指挥控制, 2017, 42(1): 3639.
FENG J,ZHU J,SHEN S L, A hybrid agent architecture based on hierarchical intelligence[J]. Fire control & Command Control, 2017, 42(1): 3639.
[6] 赵柱,王毅,樊芮锋, 等. 基于多主体NetLogo平台的反无人机OODA体系对抗建模[J]. 系统仿真学报, 2021, 33(8): 17911800.
ZHAO Z,WANG Y,FAN R F, et al. Modeling on anti-UAV system-of-systems combat OODA loop based on NetLogo[J]. Journal of System Simulation, 2021, 33(8): 17911800.
[7] 段晓君,林益, 赵城利. 系统科学教程[M]. 北京: 科学出版社, 2019.
[8] 许瑞明. 无人机集群作战涌现机理及优化思路研究[J]. 军事运筹与系统工程, 2018, 32(2): 1417.
XU R M.Research on emergence mechanism and optimization idea of UAV swarm operation[J]. Military Operations Research and Systems Engineering, 2018, 32(2): 1417.
[9] 屈强,何新华,刘中晅. 系统涌现的要素和动力学机制[J]. 系统科学学报, 2017, 25(3): 2529.
QU Q,HE X H,LIU Z H. Essential factors and dynamic mechanism of the system emergence[J]. Journal of Systems Science, 2017, 25(3): 2529.
[10] 肖宗豪,张鹏,迟文升, 等. 基于Agent与元胞自动机的无人机集群混合式控制[J]. 北京航空航天大学学报, 2021, 47(11): 23442359.
XIAO Z H,ZHANG P,CHI W S, et al. Hybrid control for UAV swarms based on agent and cellular automata[J]. Joumal of Beijing University of Aeronautics and Astronautics, 2021, 47(11): 23442359.
[11] 邵太华,陈洪辉,舒振, 等. 面向无人作战指挥控制的任务智能解析技术[J]. 指挥与控制学报, 2021, 7(2): 146152.
SHAO T H,CHEN H H,SHU Z, et al. Mission intelligent parsing for unmanned combat command and control[J]. Journal of Command and Control, 2021, 7(2): 146152.
[12] 许瑞明. 无人机集群智能的生成样式研究[J]. 现代防御技术, 2020, 48(5): 4449.
XU R M. Research on generation style of uav cluster intelligence[J]. Modern Defence Technology, 2020, 48(5): 4449.
[13] Department of the navy unmanned campaign framework[R]. Department of the Navy, 2021.
[14] FUENTES G. Pacific battle problem tests expanded use of networked autonomous warships[EB/OL].[20230620].https://news.usni.org/2023/05/16/pacific-battle-problem-tests-expanded-use-of-networked-autonomous-warships, 2023.
[15] 刘冠邦,张昕,徐小峰. 美军海战场无人机作战运用发展与启示[C]. 第九届中国指挥控制大会论文集. 北京: 中国指挥与控制学会,2021.
LIU G B,ZHANG X,XU X F. Development and enlightenment of us military naval battlefiled UAV operation application[C]. The 9th China Conference on Command and Control. Beijing: CICC, 2021.
[16] 石剑琛. 无人系统在未来海战场中的应用构想[J]. 舰船电子工程, 2017, 37(12): 58, 58.
SHI J C. Conception of unmanned system and application in future sea war field[J]. Ship Electronic Engineering, 2017, 37(12): 58, 58.
[17] 金士尧,任传俊,黄红兵. 复杂系统涌现与基于整体论的多智能体分析[J]. 计算机工程与科学, 2010, 32(3): 16.
JIN S R,REN C J,HANG H B. Emergence of complex systems and the multi-agent analysis based on holism[J]. Computer Engineering & Science, 2010, 32(3): 16.
[18] 屈强,何新华,陆皖麟. 基于f散度的复杂系统涌现度量方法[J]. 装甲兵工程学院学报, 2017, 31(3): 106110.
QU Q,HE X H,LU W L. A new approach to measure the emergence of complex system based on f-divergence[J]. Journal of Academy of Armored Force Engineering, 2017, 31(3): 106110.
[19] 金士尧,黄红兵,任传俊. 基于复杂性科学基本概念的MAS涌现性量化研究[J]. 计算机学报, 2009, 32(1): 1729.
JIN S R,HUANG H B,REN C J. Emergence-oriented research on MAS with quantifications based on the notions in science of complexity[J]. Chinese Journal of Computers, 2009, 32(1): 1729.
[20] 柳强,何明,刘锦涛, 等. 无人机“蜂群”的蜂拥涌现行为识别与抑制机理[J]. 电子学报, 2019, 47(2): 374381.
LIU Q,HE M,LIU J T, et al. A mechanism for ldentifying and suppressing the emergent flocking behaviors of UAV swarms[J]. Acta Electronica Sinica, 2019, 47(2): 374381.
[21] 许瑞明. 无人机集群智能涌现与演化建模论述[J]. 兵工自动化, 2021, 40(3): 59.
XU R M. Discussion on intelligent emergence and evolution modeling of UAV cluster[J]. Ordnance Industry Automation, 2021, 40(3): 59.
[22] AIR LAND SEA APPLICATION CENTER. Operation assessment: multi-service tactics, techniques, and procedures for operation assessment[EB/OL].[20230606]. http://www.sjzzbkj.com/view_ed634o8qn3y2lqq0.html.