Research on Desktop System of the Space Flight Training-Simulator

被引:0
作者
Huan, Shang [1 ]
Wang, Suqin [2 ]
Deng, Hua [1 ]
机构
[1] China Astronaut Res & Training Ctr, Beijing 100094, Peoples R China
[2] North China Elect Power Univ, Beijing 102206, Peoples R China
来源
MAN-MACHINE-ENVIRONMENT SYSTEM ENGINEERING, MMESE | 2016年 / 406卷
关键词
Space flight; Simulator; Desktop;
D O I
10.1007/978-981-10-2323-1_65
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Objective The purpose of desktop system of the space flight training-simulator is to minimize the cost of training on ground. Methods Various methods can be explored, these include the object-reduced, mobile-control, and virtual reality, these can maintain an operation's situation awareness level through optimize the training arrangement. Results It is so useful that almost half the training tasks are taken by object-reduced system and mobile-control system; although the VR training system is in the trail stage, it did its work quickly. Furthermore, the astronaut satisfies the desktop system and gets a better workout. Conclusion Desktop system is able to support training effectively at minimal cost by miscellaneous auxiliary, it will be widely applied to the area of large simulator for ground training.
引用
收藏
页码:583 / 591
页数:9
相关论文
共 33 条
[21]   Research on a six-degree-of-freedom disturbance force and moment simulator for space micro-vibration experiments [J].
Wang, Xiaoming ;
Xu, Zhenbang ;
Xia, Mingyi ;
He, Shuai ;
Li, Hang ;
Wu, Qingwen .
JOURNAL OF SOUND AND VIBRATION, 2018, 432 :530-548
[22]   Research and development of training pistols for laser shooting simulation system [J].
Algimantas Fedaraviius ;
Kestutis Pilkauskas ;
Egidijus Slizys ;
Arvydas Survila .
Defence Technology, 2020, 16 (03) :530-534
[23]   SOME CYTOCHEMICAL PECULIARITIES OF THE RAT-BRAIN MOTOR SYSTEM AFTER SPACE-FLIGHT [J].
SERGUTINA, AV ;
GERSHTEIN, LM ;
DAMELIO, F ;
DONTON, N ;
KRASNOV, IB .
BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE, 1995, 119 (03) :279-281
[24]   The immune system in space, including earth-based benefits of space-based research [J].
Sonnenfeld, G .
CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2005, 6 (04) :343-349
[25]   Anesthesia and critical-care delivery in weightlessness: A challenge for research in parabolic flight analogue space surgery studies [J].
Ball, Chad G. ;
Keaney, Marilyn A. ;
Chun, Rosaleen ;
Groleau, Michelle ;
Tyssen, Michelle ;
Keyte, Jennifer ;
Broderick, Timothy J. ;
Kirkpatrick, Andrew W. .
PLANETARY AND SPACE SCIENCE, 2010, 58 (04) :732-740
[26]   Monitoring inflammatory, immune system mediators, and mitochondrial changes related to brain metabolism during space flight [J].
Tocci, Darcy ;
Ducai, Tomas ;
Stoute, C. A. Barry ;
Hopkins, Gabrielle ;
Sabbir, Mohammad G. ;
Beheshti, Afshin ;
Albensi, Benedict C. .
FRONTIERS IN IMMUNOLOGY, 2024, 15
[27]   A RESTRAINING SYSTEM FOR RHESUS-MONKEYS USED IN-SPACE RESEARCH [J].
FLORENCE, G ;
RIONDET, L ;
MALECKI, H ;
BLANQUIE, JP ;
MARTIN, F ;
VISO, M ;
MILHAUD, CL .
JOURNAL OF MEDICAL PRIMATOLOGY, 1995, 24 (02) :61-67
[28]   Development of a Training System for Lathe Operation Using a Simulator with Relationship between Speed of Tool Feed and Cutting Sound/Shape of Chips [J].
Kawashimo, Takashi ;
Doyo, Daisuke ;
Yamaguchi, Tatsuya ;
Nakajima, Ryosuke ;
Matsumoto, Toshiyuki .
INDUSTRIAL ENGINEERING AND MANAGEMENT SYSTEMS, 2015, 14 (02) :175-182
[29]   Research and Implementation for a class of Large-Scale Full-Range Power System Real-Time Simulator [J].
Gu Wei ;
Zhang Yan ;
Wang Jihua ;
Gui JunGuo ;
Xu MeiMei .
2017 INTERNATIONAL CONFERENCE ON COMPUTER NETWORK, ELECTRONIC AND AUTOMATION (ICCNEA), 2017, :379-382
[30]   Commentary: Introduction to the Frontiers Research Topic: Optimization of Exercise Countermeasures for Human Space Flight-Lessons From Terrestrial Physiology and Operational Considerations [J].
Bevelacqua, Joseph J. ;
Welsh, James ;
Mortazavi, S. M. J. .
FRONTIERS IN PHYSIOLOGY, 2019, 10