Review of the evaluation methods of equipment system of systems facing the contribution rate

被引:7
作者
Yang K. [1 ]
Yang Z. [1 ]
Tan Y. [1 ]
Zhao Q. [1 ]
机构
[1] College of System Engineering, National University of Defense Technology, Changsha
来源
Xi Tong Gong Cheng Yu Dian Zi Ji Shu/Systems Engineering and Electronics | 2019年 / 41卷 / 02期
关键词
Equipment system of systems; Operation loops; Operation utility; The evaluation on the contribution rate;
D O I
10.3969/j.issn.1001-506X.2019.02.13
中图分类号
学科分类号
摘要
From the perspective of the evaluation on the contribution rate of weapon system of systems, this article summarizes the current research status and the technical difficulties in this research field. More specifically, the methods based on the combat loop, complex network, evidence reasoning, gray target theory, Bayes network, the structural equation model, exploratory analysis etc. are used to evaluate the contribution rate of weapon equipment system of systems. Furthermore, their advantages and disadvantages are compared and analyzed. Base on the comparisons, the method based on operation loops and complex networks which takes into consideration the relations between different weapons is able to assess the contribution of the weapon equipment in multiple dimensions. Hence, this method can provide more scientific and reasonable results to decision makers. © 2019, Editorial Office of Systems Engineering and Electronics. All right reserved.
引用
收藏
页码:311 / 321
页数:10
相关论文
共 76 条
  • [31] Lin M.Q., Yang F., Li Q., Et al., Analysis of the factors affecting armor weapon system operational effectiveness based on simulation, Computer Simulation, 23, 8, pp. 9-11, (2006)
  • [32] Liu Y.L., Yao J., Zhu N., Et al., Weapon effectiveness simulation system (WESS), Journal of System Simulation, 29, 6, pp. 1244-1252, (2017)
  • [33] Davis P.K., Exploratory analysis enabled by multi-resolution, multi-perspective modeling, Proc. of the Winter Simulation Conference, (2000)
  • [34] Yau P.E., An exploratory analysis on the effects of information superiority on battle outcomes, (2002)
  • [35] Johnson S.E., Libicki M.C., Treverton G.F., New Challenges, New Tools for Defense Decision-making, (2003)
  • [36] Zeng X.Z., Cai Y.F., Huang Q., Et al., Simulation and exploratory analysis based navy-battle effectiveness evaluation, Journal of System Simulation, 17, 3, pp. 763-766, (2005)
  • [37] Li X.B., Exploratory evaluation and analysis method of weapon equipment system operational effectiveness and its application, (2010)
  • [38] Li Z.M., Tan Q., Wang Y.M., Et al., Effectiveness evaluation method for information systems based on exploratory analysis, Science Technology and Engineering, 22, 9, pp. 6702-6707, (2009)
  • [39] Liu M.H., Yang F., Wang L., Et al., An operational effectiveness exploratory evaluation method of anti-ship missile based on support vector regression, Computer Simulation, 26, 8, pp. 9-12, (2009)
  • [40] Liu D.S., Guo J., Missile countermeasure effectiveness evaluation based on exploratory analysis method, Control & Automation, 26, 25, pp. 30-32, (2010)