[1] 樊延平,郭齐胜,王金良. 面向任务的装备体系作战能力需求满足度分析方法[J]. 系统工程与电子技术, 2016,38(8):1826-1832.
[2] 禹明刚,余晓辉,权翼川,等. 面向任务与基于ANP的网络信息体系能力需求满足度分析方法[J]. 系统工程理论与实践, 2016,40(3):795-806.
[3] 张杰勇,林燕,王勋,等. 基于能力满足度的网络信息体系武器装备发展路线评估方法[J]. 指挥信息系统与技术, 2018,9(5):62-67.
[4] 焦安龙,许俊飞. 武器系统作战能力需求满足度评估方法 [J]. 指挥控制与仿真, 2019,41(1):68-72.
[5] 刘国泰,王锐华,刘靖旭. 指挥信息系统能力需求满足度评估模型 [J]. 中国电子科学研究院学报, 2014(6):603-607.
[6] YANG W J, YUAN C X, ZHAO J,et al. Research on weapon and equipment requirement analysis method based on DODAF[C]// 2019 International Conference on Virtual Reality and Intelligent Systems(ICVRIS). 2019:317-319.
[7] THAL JR A E, HAVLICEK J D, CHAMBAL S J, et al. Sequencing the development order of architecture products: An application to DoDAF[C]// 2010 the 43rd Hawaii International Conference on System Sciences. 2010:1-10.
[8] LIU Z, ZHENG S f. Study on modeling of standards architecture of complex systems based on department of defense architecture framework[C]// 2017 the 3rd Asian Conference on Defence Technology(ACDT). 2017:75-80.
[9] DoD Deputy Chief Information Office. DoD Architecture Framework Version 2.02[EB/OL].[2021-03-21]. http://cionii.defense.gov/sites/dodaf20/products/DoDAF_v2-02_web.pdf.
[10]BRUSEBERG A. Applying the human views for MODAF to the conception of energy-saving work solutions [J]. INCOSE International Symposium, 2008,18(1):409-424.
[11]HAUSE M. The unified profile for DoDAF/MODAF (UPDM) enabling systems of systems on many levels[C]// 2010 IEEE International Systems Conference. 2010:426-431.
[12]Ministry of Defence of the United Kingdom. Ministry of Defence Architecture Framework (MoDAF) Viewpoints and View[EB/OL]. [2021-03-21]. http://www.mod.uk/Defence-Internet/AboutDefence/WhatWeDo/InfomationManagement/MODAF/ViewpointsAndViews.htm.
[13]PALUPI A D, SUROSA R M. Enterprise architecture design for construction services using the open group architecture framework (TOGAF): Case study ministry of public works and housing[C]// 2018 International Conference on Information Technology Systems and Innovation (ICITSI). 2018:66-71.
[14]ZULFARIAN N, ROSIYADI I D. Designing enterprise architecture for academics information system platform using the open group architecture framework architecture development method[C]// IOP Conference Series: Materials Science and Engineering. 2020, 879(1):012066.
[15]GANS H D. Development of a space vehicle CONOPS using SysML and the unified profile for DoDAF and MoDAF (UPDM)[C]// AIAA SPACE and Astronautics Forum and Exposition. 2017:DOI:10.2514/6.2017-5298.
[16]The Open Group. The Open Group Architecture Framework (TOGAF)[EB/OL]. [2021-03-21]. http://pubs.opengroup.org/architecture/togaf9-doc/arch/.
[17]SIEGERS R, DANDASHI F, BLEVINS T, et al. The Open Group Architecture Framework (TOGAF) and the US Department of Defense Architecture Framework (DoDAF) [EB/OL]. (2007-01-01)[2021-03-21]. https://www.mitre.org/publications/technical-papers/the-open-group-architecture-framework-togaf-and-the-us-department-of-defense-architecture-framework-dodaf.
[18]CAO J, FAN Z Q, GAO L L. An information-dominated and capability-oriented architecture development methodology for net-info centric systems[C]// Proceedings of IEEE International Symposium on System Engineering. 2016:240-245.
[19]樊志强,李宁,郝博. 一种Web服务QoS属性的不确定权重计算方法[J]. 软件工程, 2016,19(7):14-17.
[20]马友,王尚广,孙其博,等. 一种综合考虑主客观权重的Web服务QoS度量算法[J]. 软件学报, 2014,25(11):2473-2485.
[21]HU J Q, GUO C G, WANG H M, et al. Quality driven web services selection[C]// IEEE International Conference on e-Business Engineering(ICEBE’05). 2005:681-688.
[22]XIONG P C, FAN Y S. QoS-aware Web service selection by a synthetic weight[C]// Proceedings of the 4th International Conference on Fuzzy Systems and Knowledge Discovery(FSKD). 2007,3:632-637.
[23]徐玖平,吴巍. 多属性决策的理论与方法 [M]. 北京:清华大学出版社, 2006.
|