载人飞船
- 名manned spacecraft
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载人飞船上升段轨道的Newton迭代设计法
Newton Iterative Design Approach for Manned Spacecraft Ascent Trajectory
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AI在载人飞船环控生保系统中的应用研究
Research of AI in the Environment Control and Life Support Systems of Manned Spacecraft The Research and Application in the Environment Control Computer
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空间站同时与载人飞船和货运飞船对接时,重量可达到近100吨。
When the station docks with both manned and cargo spacecraft , its weight could reach nearly 100 tonnes .
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核心舱有3个对接口和2个停泊口。对接口用于载人飞船、货运飞船等飞行器访问空间站,停泊口用于两个实验舱与核心舱连接,另有一个出舱口供航天员出舱活动。
The module is equipped with three docking hatches reserved for visiting manned or cargo locations used to connect with space laboratories .
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2003年10月15日,乘坐神舟五号飞船的杨利伟成为第一个进入太空的中国人,那一年,他38岁。这使得中国成为继美国和俄罗斯之后第三个掌握载人飞船技术的国家。
Yang was 38 when he became the first Chinese person to go into space on the Shenzhou V , on Oct 15 , 2003 , making China the third country — after the US and Russia — to master manned space capabilities .
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目前,载人飞船和长征二号F火箭正在发射场进行最后的组装和测试。
The craft and the Long March-2F rocket are now undergoing final assembly and testing at the launch site .
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目的在载人飞船飞行期间监控环境控制与生命保障系统(environmentcontrolandlifesupportsystem,ECLSS)的工作状态,对故障进行诊断和决策支持。
Objective To monitor state of environment control and life support system ( ECLSS ), and to diagnose faults and provide decision support in manned space flight .
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在模糊高级Petri网理论基础上,采用面向对象的仿真方法实现载人飞船故障诊断。
Based on fuzzy high Petri Nets . object-oriented simulation for manned spaceflight 's fault diagnosis is implemented .
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在面向对象的故障树层次诊断模型基础上,提出用于故障诊断的模糊高级Petri网模型,并应用于载人飞船故障诊断中。
Fuzzy high Petri nets for manned spaceflight 's fault diagnosis is brought forward based on object-oriented hierarchy fault tree .
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“环球飞行者”号是Scaled联合公司去年生产的,这家公司还设计开发了世界上第一艘民用载人飞船“太空飞船一号”。
GlobalFlyer was built by Scaled Composites , the same firm that designed and launched the world 's first civilian manned spacecraft , SpaceShipOne , last year .
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本文利用小波分析优良的时频特性处理载人飞船测量数据,针对GNC系统红外地球敏感器、陀螺和姿控发动机的几种故障模式,进行了故障诊断的尝试。
This paper discusses some researches on the application of wavelet analysis in diagnosing several fault types of infrared earth sensors ( IRES ), gyros and jet engines of GNC subsystem in manned spaceship .
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周二下午,俄罗斯“联盟tma-06m”载人飞船搭载着3名宇航员,从哈萨克斯坦境内的拜科努尔太空中心发射升空。
Russian spacecraft Soyuz tma-06m blasted off with an on-board crew of 3 from the Baikonur Space Center inKazakhstan on Tuesday afternoon .
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神舟号载人飞船船载测控通信分系统
The Space-Borne TT & C Telecommunication Subsystem of Shenzhou Manned Spaceship
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载人飞船光学窗口的热光学灵敏度和热控制策略
Thermo-optical sensitivity and thermal control system for manned spaceship optical windows
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本文主要介绍小升阻比载人飞船返回舱的配平气动特性。
This paper introduces the trim aerodynamic characteristics of re-entry modules .
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神舟号载人飞船轨控发动机的研制
Development of Research on Orbit - Control Engine for Shenzhou Spaceship
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遗传算法在载人飞船返回轨道一体化设计中的应用
Genetic algorithm applied to integration design for reentry trajectory of manned-spacecraft
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载人飞船逃逸飞行段姿态控制律设计
Attitude Control Law Design for Manned Spacecraft in the Escape Flight
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载人飞船回收系统火工装置可靠性评估方法
Reliability evaluation method for pyrotechnics of recovery system of manned spacecraft
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一类无人直升机的导航与控制载人飞船的制导、导航与控制技术探讨
The Guidance , Navigation and Control Technologies of Manned Spacecraft
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载人飞船总装过程中舱内环境污染的控制
Indoor environment contamination control of manned spacecraft in process of integrated assembly
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神舟号载人飞船推进分系统的研制
The Development of the Propulsion Subsystem of Shenzhou Manned Spaceship
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帮助科学家们将载人飞船安全地送入太空。
Helped scientists to send manned spacecraft safely into space .
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中国于2003年10月15日首次成功发射了载人飞船。
China launched its first manned spaceship on Oct 15 , 2003 .
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载人飞船返回舱着陆救生辅助决策系统研究
The Study of Landing-rescue Aid-decision System of Return Capsule of Manned Spaceship
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载人飞船再入大气层航程控制的模糊控制器设计方法
Fuzzy Controller Design for Range Control in Atmosphere Reentry of Manned Spacecrafts
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载人飞船阻尼摄动模型和轨道预报精度
Drag Perturbation Model and Orbit Prediction Accuracy of Manned Spacecraft
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载人飞船的一种混合再入制导方法
A Kind of Mixed Reentry Guidance Method for Manned Spacecraft
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中国神州号载人飞船返回舱防热材料现状及展望
Status & Prospect of thermal protective materials on china 's Shenzhou spacecraft
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载人飞船环控生保自学习智能决策支持系统的设计与实现
Design and Implement of the ECLSS Adaptive Learning Intelligent Decision Support System