载人深空探测技术导论(全2册)
上QQ阅读APP看本书,新人免费读10天
设备和账号都新为新人

参考文献

[1] 钱学森.星际航行概论 [M].北京:中国宇航出版社,2008.

[2] 中国科学院.中国学科发展战略·载人深空探测 [M].北京:科学出版社,2016.

[3] 中国科学院月球与深空探测总体部.月球与深空探测 [M].广州:广东科技出版社,2014.

[4] 焦维新,邹鸿.行星科学 [M].北京:北京大学出版社,2009.

[5] 果琳丽,王平,朱恩涌,等.载人月球基地工程 [M].北京:中国宇航出版社,2013.

[6] 杨宏,叶培建,张洪太,等.载人航天器技术 [M].北京:北京理工大学出版社,2018.

[7] 孙泽州,叶培建,张洪太,等.深空探测技术 [M].北京:北京理工大学出版社,2018.

[8] 高耀南,王永富.宇航概论 [M].北京:北京理工大学出版社,2018.

[9] [美] 唐纳德·拉普.面向载人月球及火星探测任务的原位资源利用技术[M].果琳丽,郭世亮,张志贤,等,译.北京:中国宇航出版社,2018.

[10] 陈善广.载人航天技术(上、下) [M].北京:中国宇航出版社,2018.

[11] [德] 格尔达·霍内克(Gerda Horneck), [中] 庄逢源.宇宙生物学[M].北京:中国宇航出版社,2010.

[12] [美] Mohammad Jamshid.体系工程——基础理论与应用 [M].许建峰,郝政疆,黄辰,等,译.北京:电子工业出版社,2016.

[13] 林贵平,王普秀.载人航天生命保障技术 [M].北京:北京航空航天大学出版社,2008.

[14] Space Architecture—The New Frontier for Design Research [M].北京:北京大学出版社,2014.

[15] NASA系统工程手册 [M].朱一凡,李群,杨峰,等,译.北京:电子工业出版社,2012.

[16] [美] 杰弗里·A·艾斯特凡.基于模型的系统工程(MBSE)方法论综述(中英文对照)[M].张新国,译.北京:机械工业出版社,2014.

[17] 叶培建,果琳丽,张志贤,等.有人参与深空探测任务面临的风险和技术挑战 [J].载人航天,2016, 22(2): 143-149.

[18] 果琳丽,王平,梁鲁,等.载人月面着陆及起飞技术初步研究 [J].航天返回与遥感,2013, 34(4): 10-16.

[19] 果琳丽,左光,孙国江.载人深空探测发展设想及对动力技术的需求[C].中国宇航学会深空探测技术专业委员会第七届学术年会论文集,2010.

[20] 齐玢,果琳丽,张志贤,等.载人深空探测任务航天医学工程问题研究[J].航天器环境工程,2016, 33(1): 21-27.

[21] 陈金盾,刘伟波,姜国华,等.载人登月的航天医学工程问题 [J].载人航天,2010, 16(3): 44-51.

[22] 白延强,吴大蔚.长期载人航天中的医学挑战与对策 [J].航天医学与医学工程,2008, 21(3): 210-214.

[23] 白延强,刘朝霞.长期载人航天飞行医学保障面临的挑战 [J].空军医学杂志.2011, 27(1): 12-23.

[24] 欧阳自远,李春来,邹永廖,等.深空探测进展与开展我国深空探测的思考 [J].国际太空,2003(2): 2-6.

[25] 沈自才,代巍,白羽,等.载人深空探测任务的空间环境工程关键问题[J].深空探测学报,2016: 3(2): 99-106.

[26] 许峰,白延强,吴大蔚,等.载人航天空间辐射主动防护方法 [J].航天医学与医学工程,2012, 25(3): 225-229.

[27] 薛玉雄,马亚莉,杨生胜,等.火星载人探测中辐射防护综述 [J].航天器环境工程.2010, 27(4): 437-443.

[28] 张志贤,果琳丽,戚发轫,等.月面人机联合探测概念研究 [J].载人航天,2014(9): 432-442.

[29] 吴汉基,蒋远大,张志远,等.加强我国天体生物学的研究 [C].中国空间科学学会第七次学术年会,2009.

[30] 孙辉先,李慧军,张宝明,等.中国月球与深空探测有效载荷技术的成就与展望 [J].深空探测学报,2017, (4167): 495-508.

[31] 姜生元,沈毅,吴湘,等.月面广义资源探测及其原位利用技术构想[J].深空探测学报,2015, 2(4): 291-301.

[32] 何志平,王建宇,舒嵘,等.月面资源人机联合多尺度红外光谱成像探测概念研究 [J].载人航天,2017, 23(5): 597-601.

[33] 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.

[34] 王崑声,袁建华.国外基于模型的系统工程方法研究与实践 [J].中国航天,2012(11): 52-57.

[35] 贾晨曦,王林峰.国内基于模型的系统工程面临的挑战及发展建议[J].系统科学学报,2016, 24(4): 100-104.

[36] 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.

[37] Drake, Bret G. Human Exploration of Mars, Design Reference Architecture 5.0 [R], National Aeronautics and Space Administration, NASA-SP-2009-566, July 2009.

[38] ISECG. The Global Exploration Strategy, The Framework for Coordination [R]. International Space Exploration Coordination Group, http://www.globalspaceexploration.org/, April 2007.

[39] NASA. The Vision for Space Exploration [R]. National Aeronautics and Space Administration, NP-2004-01-334-HQ(Rev), February 2004. [40] Public Law 109-155, National Aeronautics and Space Administration Authorization Act of 2005 [R]. 109th Congress, December 30, 2005.

[41] Public Law 110-422, National Aeronautics and Space Administration Authorization Act of 2008 [R]. 110th Congress, October 15, 2008.

[42] Borowski, Stanley K, et al, “7-Launch”NTR Space Transportation System for NASA's Mars Design Reference Architecture(DRA)5.0 [R]. 45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, AIAA -2009-5308, August 2009.

[43] White House. U. S. Announces Review of Human Space Flight Plans, Independent Blue-Ribbon Panel will Delineate Options [R]. Office of Science and Technology Policy Press Release, May 7, 2009.

[44] Augustine Norman R. Seeking a Human Spaceflight Program Worthy of a Great Nation [R]. Review of U. S. Human Spaceflight Plans Committee, October 2009.

[45] Drake Bret G. Reducing the Risk of Human Missions to Mars Through Testing, National Aeronautics and Space Administration [R]. JSC-63726, February 2007.

[46] ISECG. The Global Exploration Roadmap [R]. International Space Exploration Coordination Group, http://www.globalspaceexploration.org/, January, 2018.

[47] Office of the President of the United States(2010), National Space Policy of the United States of America [R]. June 28, 2010.

[48] Muirhead, Brian, et al. Human Exploration Framework Team: Strategy and Status [R]. IEEEAC paper#1759, March 2011.

[49] Culbert Chris. Human Spaceflight Architecture Team(HAT)Overview, Presentation to the Global Exploration Workshop [R]. November 2011, http://www.nasa.gov/pdf/603232 main Culbert-HAT% 20 Overview% 20 for% 20 GER% 20 Workshop. pdf, site accessed October 12,2012.

[50] Hale J. NASA Integrated Model-Centric Architecture NIMA [R]. Gaithers-burg: NIST, 2013.

[51] Nichols D, Lin C. Integrated Model-Centric Engineering:The application of MBSE at JPL through the life cycle[R]. Los Angeles, CA:INCOSE,2014.

[52] AIAA. Model-Based Systems Engineering Pilot Program at NASA Langley [C]∥AIAA SPACE 2012 Conference & Exposition, 2012.

[53] Li Yi-fan. Research on the Key Technologies in Manned Deep Space Exploration [J]. Missles and Space Vehicles, 2018, 359(1): 25-31.

[54] Vago J, Gardini B, Kmine K G, et al. ExoMars-searching for Life on the Red Planet [J]. ESA Bullefin, 2006(126): 16-23.

[55] Hoffman S J, Kaplan D I. Human Exploration of Mars: The reference mission of the NASA Mars exploration Study team [C] //Houston: Science Applications International Corporation, 1997.

[56] Prince J L, Desai P N, Queen E M, et al. Mars phoenix entry, descent, and landing simulation design and modeling analysis [J]. Journal of Spacecraft and Rockets, 2011, 48(5): 756-764.

[57] Jean - Marc Salotti. Robust, affordable, Semi - alirect Mars mission [J]. Acta Astronautica, 2016(127): 235-248.

[58] Gardini B, Ongaro F, Pradier A, et al. The aurora program for the human exploration of the solar system [C] //Long Beach: AIAA Space 2003 Conference & Exposition, 2003.

[59] Benton Sr M G, Caplin Sr G, Reiley K, et al. Boeing design trades in support of the NASA Altair Lunar lander concept definition [C] //AIAA Space 2008 Conference & Exposition, 2008.

[60] Benton Sr M G. Conceptual Design of Crew Exploration Lander for Asteroid Ceres and Saturn Moons Rhea and Iapetus [C] //48th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition, 2010.

[61] Benton Sr M G, Donahue B, Caplin G, et al. Configuration Options to Maximize Lunar Surface Reuse of Altair Lander Structure and Systems [C] //AIAA Space 2009 Conference & Exposition, 2009.

[62] Benton Sr M G. Conceptual Space Vehicle Architecture for Human Exploration of Mars, with Artificial Gravity and Mini - Magnetosphere Crew Radiation Shield [C] //AIAA Space 2012 Conference & Exposition, 2012.

[63] Gabriel G. De L T, Berna van B, et al. Future perspectives on space psychology: recommendations on psychosocial and neurobehavioural aspects of human spaceflight [J]. Acta Astronautica. 2012, 81(2): 587-599.

[64] Turso J. Instrumentation and Control Needs for Reliable Operation of Lunar Base Surface Nuclear Power Systems [R]. NASA/TM-2005-213839.

[65] Zakrajsek J J, Mckissock D B, Woytach J M, et al. Exploration rover concepts and development challenges [R]. AIAA-2005-2525.3.

[66] West J B. Historical perspectives: physiology in microgravity [J]. Appl Physiol 2000(89): 379-384.

[67] Guo LinLi. Manned Lunar Base and in Situ Resource Utilization: How to make humans a multi-planet species [C] //Horizon 2061, 2018.

[68] Guo LinLi. Research on Technology Validations of Deep Space Exploration in the Space Station [C] //Global Space Exploration Conference, 2017.

[69] Guo LinLi, Conceptual Design and Scientific Application Analysis of Manned Lunar Base [C] //Astronomy from the Moon and International Human Moon Missions, 2017.

[70] Jason C, Gruson R, Marshall Smith, et al. Deep Space gateway concept:Extending human presence into cislunar Space [C] //2018 IEEE Aerospace Conference.

[71] Jocly Singer, Jeny Cook. The mars generation-building the fature success of deep space hunan exploration [C] //2018 Space Ops Conference.

[72] Melissa L, McGuire, Steven R, et al. NASA GRC compass team conceptual point design and trades of a hybrid solar electric propulsion(SEP)/chemical propulsion human mars deep space transport(DST)vehicle [C] //2018 AIAA Space and Astronautics Forum and Exposition.

[73] Ghassabian G Hady, Calzada DiaI Abigail, Hettrich Sebastian, et al. ALCIDES:A novel: lunar mission concept study for the demonstration of enabling technologies in deep-space exploration and human-robots interaction [J]. Actel Astronacctica, 2018(151): 270-283.

[74] Jody Singer, Jenny Cook. The Mars generation - building the future success of deep space human exploration [C] //2018 Space Ops Conference, 2018.

[75] Wallace S. Tai, Douglas S Abraham, Kar - Ming Cheung. Mars Planetary network for human exploration era-potential challenges and solutions [C] //2018 Space Ops Conference, 2018.