1 |
修忠信, 由立岩. 运输类飞机合格审定飞行试验指南[M]. 上海: 上海交通大学出版社, 2013.
|
|
XIU Z X , YOU L Y . Flight test guide for certification of transport category airplanes[M]. Shanghai: Shanghai Jiao Tong University Press, 2013.
|
2 |
卢艺, 郝莲, 李承立, 等. 基于构型项目分类的民机系统适航符合性证据体系结构研究[J]. 民用飞机设计与研究, 2017, (3): 26- 30.
|
|
LU Y , HAO L , LI C L . Research on configuration item classification based on civil aircraft system airworthiness compliance evidence system structure[J]. Civil Aircraft Design & Research, 2017, (3): 26- 30.
|
3 |
WYMORE A W . Model-based systems engineering: an introduction to the mathematical theory of discrete systems and to the tricotyledon theory of system design[M]. Boca Raton: Chemical Rubber Company Press, 1993.
|
4 |
ESTEFAN J A. Survey of model-based systems engineering methodologies[R]. Washington: International Council on Systems Enginee-ring, 2008.
|
5 |
MONTGOMERY P R . Model-based system integration (MBSI)-key attributes of MBSE from the system integrator's perspective[J]. Procedia Computer Science, 2013, 16, 313- 322.
doi: 10.1016/j.procs.2013.01.033
|
6 |
BJORKMAN E A , SARKANI S , MAZZUCHI T A . Using model-based systems engineering as a framework for improving test and evalua-tion activities[J]. Systems Engineering, 2013, 16 (3): 346- 362.
doi: 10.1002/sys.21241
|
7 |
MARSHALL J, FERGUSON R, ASSADZADEH L. Using model based systems engineering structures for onboard spacecraft electro-nics[C]//Proc.of the IEEE Aerospace Conference, 2018.
|
8 |
MORDECAI Y , ORHOF O , DORI D . Model-based interoperability engineering in systems-of-systems and civil aviation[J]. IEEE Trans.on Systems Man & Cybernetics Systems, 2018, 48 (4): 637- 648.
|
9 |
FISCHER P M , LUDTKE D , LANGE C , et al. Implementing model-based system engineering for the whole lifecycle of a spacecraft[J]. CEAS Space Journal, 2017, 9 (3): 351- 365.
doi: 10.1007/s12567-017-0166-4
|
10 |
FUSARO R, FERRETTO D, VIOLA N. MBSE approach to support and formalize mission alternatives generation and selection processes for hypersonic and suborbital transportation systems[C]//Proc.of the IEEE International Systems Engineering Symposium, 2017.
|
11 |
PEREZ R M. Application of MBSE to risk-informed design methods for space mission applications[C]//Proc.of the AIAA Space Conference and Exposition, 2014: 4411.
|
12 |
BACHMAN J T . Obtaining a cross-engineering collaborative environment via transition to a model-based system engineering (MBSE) approach[J]. Journal of Defense Modeling and Simulation: Applications, Methodology, Technology, 2018, 15 (4): 461- 469.
doi: 10.1177/1548512916646885
|
13 |
CHANG S, WANG Y. Civil aircraft IVHM system analysis using model based system engineerin g[C]//Proc.of the International Conference on Reliability Systems Engineering, 2017.
|
14 |
BOUGAIN S , GERHARD D . Integrating environmental impacts with SysML in MBSE methods[J]. Procedia CIRP, 2017, 61, 715- 720.
doi: 10.1016/j.procir.2016.11.196
|
15 |
O'NEIL D A , PETTY M D . Organizational simulation for model based systems engineering[J]. Procedia Computer Scie-nce, 2013, 16, 323- 332.
doi: 10.1016/j.procs.2013.01.034
|
16 |
RUSSELL M . Using MBSE to enhance system design decision making[J]. Procedia Computer Science, 2012, 8, 188- 193.
doi: 10.1016/j.procs.2012.01.041
|
17 |
张绍杰, 李正强, 海晓航, 等. 基于MBSE的民用飞机安全关键系统设计[J]. 中国科学:技术科学, 2018, 48 (3): 299- 311.
|
|
ZHANG S J , LI Z Q , HAI X H , et al. Safety critical systems design for civil aircrafts by MBSE[J]. Scientia Sinica Technologica, 2018, 48 (3): 299- 311.
|
18 |
王成恩. 涡轮叶片冷却结构设计中基于MBSE的多学科建模方法[J]. 中国科学:信息科学, 2018, 48 (7): 783- 793.
|
|
WANG C E . MBSE-based multidisciplinary modeling for designing turbine blade cooling structures[J]. Scientia Sinica Informationis, 2018, 48 (7): 783- 793.
|
19 |
屈玉池, 晁祥林, 钱锟. A380的试飞历程[J]. 国际航空, 2007, (7): 20- 23.
|
|
QU Y C , ZHAO X L , QIAN K . A380 flight tests[J]. International aviation, 2007, (7): 20- 23.
|
20 |
NORRIS G , MECHAM M . Boeing's 787 flight test plan breaks new ground[J]. Aviation Week & Space Technology, 2009, 170 (24): 1- 3.
|
21 |
NORRIS G . 787 moves closer to 777 commonality approval[J]. Aviation Week & Space Technology, 2010, 172 (24): 8- 9.
|
22 |
逸平. ARJ21-700喷气支线客机从试飞到接受市场检验[J]. 交通与运输, 2015, (3): 46- 47.
doi: 10.3969/j.issn.1671-3400.2015.03.022
|
|
YI P . ARJ21-700 regional jet airliner from test flight to market inspection[J]. Traffic & Transportation, 2015, (3): 46- 47.
doi: 10.3969/j.issn.1671-3400.2015.03.022
|
23 |
AP-21-AA-2011-03-R4.航空器型号合格审定程序[S].北京:中国民用航空局, 2011.
|
|
AP-21-AA-2011-03-R4. Aircraft type certification process[S]. Beijing: Civil Aviation Administration of China, 2011.
|
24 |
NASTOV B, CHAPURLAT V, PFISTER F, et al. MBSE and V & V: a tool-equipped method for combining various V & V strategies[C]//Proc.of the IFAC World Congress, 2017: 10538-10543.
|
25 |
GERY E, HAREL D, PALACHI E. Rhapsody: a complete life-cycle model-based development system[C]//Proc.of the International Conference on Integrated Formal Methods, 2002.
|
26 |
霍夫曼. 基于模型的系统工程最佳实践[M]. 北京: 航空工业出版社, 2014.
|
|
HOFFMANN H P . Model-based systems engineering best practices[M]. Beijing: Aviation Industry Press, 2014.
|
27 |
CCAR-25-R4.运输类飞机适航标准[S].北京:中国民用航空局, 2011.
|
|
CCAR-25-R4. Airworthiness standards for transport aircraft[S]. Beijing: Civil Aviation Administration of China, 2011.
|