Systems Engineering and Electronics ›› 2026, Vol. 48 ›› Issue (8): 2669-2679.doi: 10.12305/j.issn.1001-506X.2026.08.15
• Systems Engineering • Previous Articles
Yuheng DANG(
), Xing PAN, Lingze LIU
Received:2025-02-28
Revised:2025-06-24
Online:2026-01-24
Published:2026-01-24
Contact:
Xing PAN
E-mail:dangyuheng@buaa.edu.cn
CLC Number:
Yuheng DANG, Xing PAN, Lingze LIU. Mission-communication coupling structure modeling and simulation verification of intelligent networked equipment SoS based DoDAF[J]. Systems Engineering and Electronics, 2026, 48(8): 2669-2679.
| 1 |
LIN M L, CHEN T, REN B B, et al. CADer: a deep reinforcement learning approach for designing the communication architecture of system of systems[J]. IEEE Trans. on Intelligent Vehicles, 2023, 8 (5): 3405- 3417.
doi: 10.1109/TIV.2023.3236104 |
| 2 | XU R J, LIU J H, LI J C, et al. TSoSRA: a task-oriented resilience assessment framework for system-of-systems[J]. Reliability Engineering & System Safety, 2024, 248, 110186. |
| 3 |
LI Q, CUI L J, WANG Q, et al. Construction and application of an agent-based intelligent operation and maintenance system for UAV[J]. Drones, 2025, 9 (4): 309.
doi: 10.3390/drones9040309 |
| 4 |
PAN X, WANG H X, YANG Y J, et al. Resilience based importance measure analysis for SoS[J]. Journal of Systems Engineering and Electronics, 2019, 30 (5): 920- 930.
doi: 10.21629/JSEE.2019.05.10 |
| 5 | LI J C, TAN Y J, YANG K W, et al. Structural robustness of combat networks of weapon system-of-systems based on the operation loop[J]. International Journal of Systems Science, 2016, 48 (3): 659- 674. |
| 6 | LE V H, NGUYEN T T, NGUYEN K K. Dual wireless anti-interception for ground combat vehicles[J]. IEEE Trans. on Vehicular Technology, 2024, 72 (12): 16236- 16248. |
| 7 |
TRAN H T, DOMERCANT J C, MAVRIS D N. Evaluating the agility of adaptive command and control networks from a cyber complex adaptive systems perspective[J]. Journal of Defense Modeling and Simulation, 2015, 12 (4): 405- 422.
doi: 10.1177/1548512915592517 |
| 8 | ZENG C Y, LIU H F, LU L A, et al. SHATTER: searching heterogeneous combat network attack sequences through network embedding and reinforcement learning[J]. IEEE Systems Journal, 2023: 17: 4497−4508. |
| 9 |
潘星, 张振宇, 张曼丽, 等. 基于SoSE的装备体系RMS论证方法研究[J]. 系统工程与电子技术, 2019, 41 (8): 1771- 1779.
doi: 10.3969/j.issn.1001-506X.2019.08.14 |
|
PAN X, ZHANG Z Y, ZHANG M L, et al. Research on RMS demonstration method of equipment SoS based on SoSE[J]. Systems Engineering and Electronics, 2019, 41 (8): 1771- 1779.
doi: 10.3969/j.issn.1001-506X.2019.08.14 |
|
| 10 |
LI M H, PAN X, ZHANG N M, et al. Reliability of system-of-systems: a new challenge of complex engineered systems[J]. Frontiers of Engineering Management, 2025, 12 (2): 434- 441.
doi: 10.1007/s42524-025-4244-6 |
| 11 |
WEI L I, WANG Y, JIA L, et al. Battlefield target intelligence system architecture modeling and system optimization[J]. Journal of Systems Engineering and Electronics, 2024, 35 (5): 1190- 1210.
doi: 10.23919/JSEE.2024.000114 |
| 12 |
AXELSSON J. Implications of second-order cybernetics and autopoiesis on systems-of-systems engineering[J]. Systems, 2025, 13 (2): 119.
doi: 10.3390/systems13020119 |
| 13 |
PAPAVASILIOU S, GOROD A, REAICHE C. System of systems engineering governance framework for digital transformation: a case study of an Australian large government agency[J]. Systems Engineering, 2024, 27 (2): 267- 283.
doi: 10.1002/sys.21719 |
| 14 |
WU S X, WANG G X, LU J Z, et al. Design ontology for cognitive thread supporting traceability management in model-based systems engineering[J]. Journal of Industrial Information Integration, 2024, 40, 100619.
doi: 10.1016/j.jii.2024.100619 |
| 15 |
潘星, 尹宝石, 温晓华. 基于DoDAF的装备体系任务建模与仿真[J]. 系统工程与电子技术, 2012, 34 (9): 1846- 1851.
doi: 10.3969/j.issn.1001-506X.2012.09.17 |
|
PAN X, YIN B S, WEN X H. Mission modeling and simulation for equipment system of systems based on DoDAF[J]. Systems Engineering and Electronics, 2012, 34 (9): 1846- 1851.
doi: 10.3969/j.issn.1001-506X.2012.09.17 |
|
| 16 | 潘星, 黄元星, 尹宝石. 基于功能和联接的装备体系结构[J]. 系统工程与电子技术, 2012, 34 (10): 2052- 2057. |
| PAN X, HUANG Y X, YIN B S. Equipment system of systems architecture based on function and connection[J]. Systems Engineering and Electronics, 2012, 34 (10): 2052- 2057. | |
| 17 | DOD. Systems engineering guide for systems of systems [M]. Washington, D.C.: US Department of Defense (DoD), 2008. |
| 18 |
ZHANG X X, LUO A M, MAO Y, et al. A semi-automatic optimization design method for SvcV-5 in DoDAF 2.0 based on service identification[J]. IEEE Access, 2020, 8, 33442- 33460.
doi: 10.1109/ACCESS.2020.2970446 |
| 19 |
GE B F, HIPEL K W, YANG K W, et al. A novel executable modeling approach for system-of-systems architecture[J]. IEEE Systems Journal, 2014, 8 (1): 4- 13.
doi: 10.1109/JSYST.2013.2270573 |
| 20 | TAO Z G, LUO Y F, CHEN C X, et al. Enterprise application architecture development based on DoDAF and TOGAF[J]. Enterprise Information Systems, 2015, 11 (1/5): 627- 651. |
| 21 |
FANG Z M, ZHAO X M, LI F Y. Architecture design space generation via decision pattern-guided department of defense architecture framework modeling[J]. Systems, 2024, 12 (9): 336.
doi: 10.3390/systems12090336 |
| 22 | ZHAN Z J, WANG Y H, LI B F, et al. Architecture design of air-sea joint combat system based on DoDAF[C]// Proc. of the Annual Conference of Chinese Society of Optical Engineering, 2019. |
| 23 | 陈志伟, 张罗庚, 方晓彤, 等. 装备体系可靠性概念、建模与预计方法研究[J]. 系统工程与电子技术, 2024, 46 (6): 1975- 1985. |
| CHEN Z W, ZHANG L G, FANG X T, et al. Reliability concepts, modeling, and prediction methods for weapon system of systems[J]. Systems Engineering and Electronics, 2024, 46 (6): 1975- 1985. | |
| 24 | 张维明, 刘忠, 阳东升, 等. 体系工程理论与方法[M]. 4版. 北京: 科学出版社, 2010. |
| ZHANG W M, LIU Z, YANG D S, et al. The theory and methods of system of systems engineering[M]. 4th ed. Beijing: Science Press, 2010. | |
| 25 |
CHEN Z W, ZHOU Z M, ZHANG L G, et al. Mission reliability modeling and evaluation for reconfigurable unmanned weapon system-of-systems based on effective operation loop[J]. Journal of Systems Engineering and Electronics, 2023, 34 (3): 588- 597.
doi: 10.23919/JSEE.2023.000082 |
| 26 |
CHERFA I, BELLOIR N, SADOU S, et al. Systems of systems: from mission definition to architecture description[J]. Systems Engineering, 2019, 22 (6): 437- 454.
doi: 10.1002/sys.21523 |
| 27 | CHEN J, ZHA D S, GAO K, et al. Model-based approach for civil aviation material support system modeling[J]. Systems Engineering, 2025, 28(4): 557−576. |
| 28 | GRIENDLING K, MAVRIS D N. Development of a DoDAF-based executable architecting approach to analyze system-of-systems alternatives[C]//Proc. of the IEEE Aerospace Conference, 2011. |
| 29 | PAN X, YIN B S, HU J. Modeling and simulation for SoS based on the DoDAF framework[C]//Proc. of the 9th International Conference on Reliability, Maintainability and Safety, 2011: 1283−1287. |
| 30 |
TAI X. Simulation evaluation and case study verification of equipment system of systems support effectiveness[J]. Systems, 2025, 13 (2): 77.
doi: 10.3390/systems13020077 |
| 31 |
黄宁, 伍志韬. 网络可靠性评估模型与算法综述[J]. 系统工程与电子技术, 2013, 35 (12): 2651- 2660.
doi: 10.3969/j.issn.1001-506X.2013.12.32 |
|
HUANG N, WU Z T. Survey of network reliability evaluation models and algorithms[J]. Systems Engineering and Electronics, 2013, 35 (12): 2651- 2660.
doi: 10.3969/j.issn.1001-506X.2013.12.32 |
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