Equipment Contribution Degree Evaluation Method Based on Combat Network of Weapon System-of-Systems
LI Jichao1, YANG Kewei1, ZHANG Xiaoke1, JIANG Jiang1, QING Duzheng2
1. College of Information System and Management, National University of Defense Technology, Changsha 410073, China; 2. Science and Technology on Space System Simulation Laboratory, Beijing Simulation Center, Beijing 100854, China
Abstract:In the paper, an equipment contribution degree evaluation method based on combat network of weapon system-of-systems (WSOS) is proposed. Firstly, weapons and armaments are abstracted as nodes while the complicated relationships between weapon and armaments are abstracted as edges of combat network. The nodes and edges are categorized and related mathematical models based on operational indicators are built.For a better evaluation of WSOS operational effectiveness, a comprehensive evaluation index based on operation loop is put forward. Besides, an equipment contribution degree evaluation model is established to weigh the equipment contribution within the WSOS. Finally, a theater missile defense system-of-systems is taken as a case study to verify the feasibility and effectiveness of the proposed methods. The results show that the decision organs play a most important role in the WSOS.
[1] Zuo X S,Qu Y. Operational ability evaluation model of the armored weapon system of system[C].Proceedings of the 25th Chinese Control and Decision Conference, Guiyang, 2013: 2161-2163. [2] Tian H, Gan Z C. Anetwork-centric architecture for combat system-of-systems model[J].Information and Automation, 2011, 86: 411-417. [3] 谭跃进,张小可,杨克巍. 武器装备体系网络化描述与建模方法[J].系统管理学报, 2012, 21 (6): 781-786. Tan Yuejin, Zhang Xiaoke, Yang Kewei. Research on networked description and modeling methods of armament system-of-systems[J].Journal of Systems & Management, 2012, 21 (6): 781-786. [4] Fagiolo G, Moneta A, Windrum P A. Critical guide to empirical validation of agent-based models in economics: methodologies, procedures, and open problems[J].Computational Economics, 2007, 30 (3): 195-226. [5] Gue K R. A dynamic distribution model for combat logistics[J].Computers & Operations Research, 2003, 30: 367-381. [6] Jeffrey R C. Distributed Networked Operations: The Foundations of Network Centric Warfare[M].Newport: Alidade, 2006. [7] Jeffrey R C. An Information Age Combat Model[M].Newport: Alidade, 2004. [8] Sean D, Michael I B, Shannon R B, et al. Applying the information age combat model: quantitative analysis of network centric operations [J].C2 Journal, 2009, 3 (1): 1-25. [9] Dekker A H. C4ISR,the FINC methodology, and operations in urban terrain [J].Journal of Battlefeild Technology, 2005, 8 (1): 1-4. [10] Dekker A H. Measuring the agility of networkedmilitary forces[J].Journal of Battlefeild Technology, 2006, 9 (1): 19-24. [11] Boaz G, Moshe K, Michal P, et al. Network optimization models for resource allocation in developing mlitary countermeasures[J].Operations Research, 2012, 60 (1): 48-63. [12] 刘磊, 荆涛, 吴小勇. 武器装备体系演化的评估方法研究[J].系统仿真学报, 2006, 18 (z2): 621-623. Liu Lei, Jing Tao, Wu Xiaoyong. Research on evaluation of armament system of systems evolution[J].Journal of System Simulation, 2006, 18 (z2): 621-623. [13] 常雷雷, 张小可, 李孟军. 基于灰靶理论的武器装备体系技术贡献度评估[J].兵工自动化, 2010, 29 (10): 13-15. Chang Leilei, Zhang Xiaoke,Li Mengjun. Weapon system of system technology contribution evaluation based on grey target theory[J].Ordnance Industry Automation, 2010, 29 (10): 13-15. [14] 于芹章, 张英朝, 张静,等. 基于整体效果的装备体系作战效能评估方法研究[J].系统仿真技术, 2011, 07(3):183-189. Yu Qinzhang, Zhang Yingchao, Zhang Jing, et al. Synthetic evaluation methodology of operational effectiveness for system of armament systems based overall effect[J].System Simulation Technology, 2011, 07(3):183-189. [15] 白松浩, 兰洪亮, 郑娜,等. 基于贡献度模型方法对空中交通管制中心系统的效能评估[J].航空学报, 2011, 32(3):438-447. BaiSonghao, LanHongliang, Zheng Na, et al. Effectiveness evaluation of air traffic control system based on the method of system contributory model[J].Acta Aeronautica ET Astronautica Sinica, 2011, 32(3):438-447.