1 |
张有山, 杨雷, 王平, 等. 基于模型的系统工程方法在载人航天任务中的应用探讨[J]. 航天器工程, 2014, 23 (5): 121- 128.
doi: 10.3969/j.issn.1673-8748.2014.05.020
|
|
ZHANG Y S , YANG L , WANG P , et al. Discussion on application of model-based systems engineering method to human spaceflight mission[J]. Spacecraft engineering, 2014, 23 (5): 121- 128.
doi: 10.3969/j.issn.1673-8748.2014.05.020
|
2 |
张柏楠, 戚发轫, 邢涛, 等. 基于模型的载人航天器研制方法研究与实践[J]. 航空学报, 2020, 41 (7): 023967.
|
|
ZHANG B N , QI F R , XING T , et al. Model-based development method of manned spacecraft: research and practice[J]. Acta Aeronautica, 2020, 41 (7): 023967.
|
3 |
何巍, 胡久辉, 赵婷, 等. 基于模型的运载火箭总体设计方法初探[J]. 导弹与航天运载技术, 2021, 378 (1): 12- 17.
|
|
HE W , HU J H , ZHAO T , et al. Research on model based launch vehicle overall design[J]. Missiles and Space Vehicles, 2021, 378 (1): 12- 17.
|
4 |
卢志昂, 刘霞, 毛寅轩, 等. 基于模型的系统工程方法在卫星总体设计中的应用实践[J]. 航天器工程, 2018, 27 (3): 7- 16.
|
|
LU Z A , LIU X , MAO Y X , et al. Application practice of model-based system engineering method in satellite integrative system design[J]. Spacecraft Engineering, 2018, 27 (3): 7- 16.
|
5 |
于国斌. 深空探测任务协同的系统工程方法应用及趋势[J]. 深空探测学报, 2021, 8 (4): 407- 413.
doi: 10.15982/j.issn.2096-9287.2021.20210036
|
|
YU G B . Application and trend of model-based systems engineering methods for deep space exploration mission[J]. Journal of Deep Space Exploration, 2021, 8 (4): 407- 413.
doi: 10.15982/j.issn.2096-9287.2021.20210036
|
6 |
焦洪臣, 雷勇, 张宏宇, 等. 基于MBSE的航天器系统建模分析与设计研制方法探索[J]. 系统工程与电子技术, 2021, 43 (9): 2516- 2525.
|
|
JIAO H C , LEI Y , ZHANG H Y , et al. Research on modeling and design method of spacecraft system based on MBSE[J]. Systems Engineering and Electronics, 2021, 43 (9): 2516- 2525.
|
7 |
黄冉, 彭祺擘, 武新峰, 等. 基于DoDAF的载人登月体系结构建模[EB/OL]. [2022-07-15]. https://kns.cnki.net/kcms/detail/11.2422.TN.20220712.0845.002.html.
|
|
HUANG R, PENG Q B, WU X F, et al. Architecture modeling for manned lunar landing mission based on DoDAF[EB/OL]. [2022-07-15]. https://kns.cnki.net/kcms/detail/11.2422.TN.20220712.0845.002.html.
|
8 |
张兵, 陈建伟, 杨亮, 等. 基于模型的系统工程在航天产品研发中的研究与实践[J]. 宇航总体技术, 2021, 5 (1): 1- 7.
|
|
ZHANG B , CHEN J W , YANG L , et al. Research and practice of model-based systems engineering in aerospace products[J]. Aeronautical Systems Engineering Technology, 2021, 5 (1): 1- 7.
|
9 |
胡京煜. 基于模型的系统工程方法在导弹总体设计中的应用[J]. 科技与创新, 2019, (11): 153- 155.
|
|
HU J Y . Application of model-based systems engineering method in the overall design of missile[J]. Science and Technology & Innovation, 2019, (11): 153- 155.
|
10 |
国际系统工程协会. 系统工程手册: 系统生命周期流程和活动指南[M]. 张新国, 译. 北京: 机械工业出版社, 2015.
|
|
INCOSE. Systems engineering handbook: a guide for system life cycle processes and activities[M]. ZHANG X G, trans. Beijing: China Machine Press, 2015.
|
11 |
EVIN E , ULUDAǦ Y . Bioanalytical device design with model-based systems engineering tools[J]. IEEE Systems Journal, 2020, 14 (3): 3139- 3149.
|
12 |
LISCOUËT-HANKE S , JAHANARA H , BAUDUIN J L . A model-based systems engineering approach for the efficient specification of test rig architectures for flight control computers[J]. IEEE Systems Journal, 2020, 14 (4): 5441- 5450.
|
13 |
MHENNI F , NGUYEN N , CHOLEY J Y . SafeSysE: a safety analysis integration in systems engineering approach[J]. IEEE Systems Journal, 2018, 12 (1): 161- 172.
|
14 |
DAVID P , IDASIAK V , KRATZ F . Reliability study of complex physical systems using SysML[J]. Reliability Engineering & System Safety, 2010, 95 (4): 431- 450.
|
15 |
HU Y P , PENG Q B , NI Q , et al. Event-based safety and reliabi-lity analysis integration in model-based space mission design[J]. Reliability Engineering & System Safety, 2023, 229, 108866.
|
16 |
DUNCAN K R , ETIENNE-CUMMINGS R . A model-based systems engineering approach to trade space exploration of implanted wireless biotelemetry communication systems[J]. IEEE Systems Journal, 2019, 13 (2): 1669- 1677.
|
17 |
BOZZANO M , CIMATTI A , KATOEN J P , et al. Spacecraft early design validation using formal methods[J]. Reliability Engineering & System Safety, 2014, 132, 20- 35.
|
18 |
HAI X H, ZHANG S J, XU X D. Civil aircraft landing gear brake system development and evaluation using model based system engineering[C]//Proc. of the 36th Chinese Control Conference, 2017: 10192-10197.
|
19 |
FISCHER P M , LVDTKE D , LANGE C , et al. Implementing model based systems engineering for the whole lifecycle of a spacecraft[J]. CEAS Space Journal, 2017, 9 (3): 351- 365.
|
20 |
BACHELOR G , BRUSA E , FERRETTO D , et al. Model-based design of complex aeronautical systems through digital twin and thread concepts[J]. IEEE Systems Journal, 2020, 14 (2): 1568- 1579.
|
21 |
ALEKSANDRAVIČIENE A , MORKEVIČIUS A . MagicGrid® book of knowledge[M]. 2nd ed Paris: Dassault Systemes, 2021.
|
22 |
FRIEDENTHAL S , OSTER C . Architecting spacecraft with SysML[M]. Charleston, SC, USA: CreateSpace Independent Publishing Platform, 2017.
|
23 |
SPANGELO S C, KASLOW D, DELP C, et al. Applying model based systems engineering (MBSE) to a standard CubeSat[C]//Proc. of the IEEE Aerospace Conference, 2012: 12691002.
|
24 |
SANFORD F , ALAN M , RICK S . A practical guide to SysML: the system modeling language[M]. 3rd ed San Mateo, CA: Morgan Kaufmann, 2015.
|
25 |
彭祺擘, 吕纪远. 月球空间站停泊轨道选择分析[J]. 宇航学报, 2022, 43 (2): 167- 172.
|
|
PENG Q B , LYU J Y . Analysis on selection of parking orbit for lunar space station[J]. Journal of Astronaitics, 2022, 43 (2): 167- 172.
|
26 |
WANG X H , MAO L H , YUE L X , et al. Manned lunar landing mission scale analysis and flight scheme selection based on mission architecture matrix[J]. Acta Astronautica, 2019, 152, 385- 395.
|
27 |
NASA. NASA's lunar exploration program overview[R]. US: NASA, 2020.
|
28 |
FOUST J . Gateway or bust: NASA's plan for a 2024 lunar landing depends on a much-criticized orbital outpost[J]. IEEE Spectrum, 2019, 56 (7): 32- 37.
|
29 |
EVANS M E , GRAHAM L D . A flexible lunar architecture for exploration (FLARE) supporting NASA's artemis program[J]. Acta Astronautica, 2020, 177, 351- 372.
|
30 |
WATSON-MORGAN L, HAWJINS L, JACOBS B, et al. NASA's artemis human landing systems[C]//Proc. of the IEEE Aerospace Conference, 2022: 21955853.
|