The spacecraft environment engineering in 21 century

  • 21世纪的航天器环境工程
  • 来源:互联网摘选更新时间:2026-07-13 07:19:46

  • 重点词汇
  • inprep. 在里面;在(某范围或空间内的)某一点;在(某物的形体或范围)中;在…内;在…中;进入
  • 21 twenty-one;[电影]决胜21点;
  • theart.这个;指已提到或易领会到的人或事物;指独一无二的、正常的或不言而喻的人或事物;用以泛指;与形容词连用,指事物或统称的人;用于姓氏的复数形式前,指家庭或夫妇;(指特定用途的事物)足够,恰好;每,一;当前的,本,此;(重读,表示所指的为知名或重要的人或事物)
  • environmentn.生活环境;自然环境,生态环境;
  • centuryn.世纪;一百年;
  • engineeringn.工程(学), 工程师行业;操纵,管理;土木工程,工事;开车技术;
  • spacecraftn.[航天]宇宙飞船,航天器;
  • 相关例句
1、

Dynamic membrane and its application in environment engineering SPACECRAFT ENVIRONMENT ENGINEERING ( 2001) CONTENTS

动态膜技术及其在环境工程中的应用《航天器环境工程》(2001)总目次

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2、

Using power flow theory, the vibration damping characteristics of typical interconnected structures in spacecraft engineering are studied in this paper.

本文利用功率流理论对航天工程中典型减振连接结构的减振特性进行了研究。

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3、

Dynamic Modelling of Liquid-Solid Coupling System with Container in Spacecraft Engineering and Investigating of its Coupling Mechanism

航天工程中的贮箱类液固耦合动力学建模及耦合机理研究

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4、

Quantitative analysis of human performance in microgravity is important for both scientific investigations and spacecraft engineering design.

定量的分析人类在微重力环境下的活动,对科学研究和太空船工程设计均很重要。

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5、

The method in this paper may find applications in the Spacecraft Engineering and machine system designs.

文中方法可应用于航天器、机构等动力学方程推导。

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6、

Vibration control technologies have wide applications in the field of spacecraft engineering.

在航天工程领域,减振技术得到了越来越广泛的应用。

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7、

A new method is promoted for flexible spacecraft control by describing flexible spacecraft dynamics equations as T-S fuzzy model and designing a PDC fuzzy controller.

将挠性航天器姿态动力学方程描述为T-S模糊模型为挠性航天器控制提供了新思路;

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8、

The simulation results demonstrate the feasibility and effectiveness of the proposed method. A robust active control approach is presented for the attitude tracking control and vibration damping of a spacecraft with actor dynamics.

针对带有执行机构动态特性的挠性航天器姿态跟踪问题,基于后步滑模及主动振动控制技术提出一种鲁棒主动控制策略。

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9、

In order to verify the dynamics characteristic of a space remote sensing camera, spacecraft and camera dynamics coupling test is needed.

为了检验空间遥感相机的动力学特性,需要对相机与飞船进行动力学耦合试验。

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10、

Global simulation of spacecraft appendage deployment dynamics by variable topology

变拓扑航天器附件展开动力学的全局仿真

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11、

Depending upon configuration, air-bearing systems provide some combination of translational and rotational freedom; the three degrees of rotational freedom provided by a spherical air bearing are ideal for investigation of spacecraft attitude dynamics and control problems.

气浮台系统通过配置可具备若干平动或转动的自由度,采用球形气浮轴承则可以提供三轴的转动自由度,是研究空间飞行器姿态动力学与控制问题的理想平台。

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12、

The asteroid Ivar is modeled as a tri-axial ellipsoid, its sphere gravitational potential is given, and spacecraft orbital dynamics equation around the asteroid Ivar is established.

将小行星Ivar近似为三轴椭球体,给出了非球形引力势函数,建立了航天器环绕小行星Ivar的轨道动力学方程。

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13、

In this paper, the irregular sphere gravitational potential is given based on adapting to a tri-axial ellipsoid model of a small body, and the spacecraft orbital dynamics equation around a small body is established.

针对可以用三轴椭球体近似建模的小天体,给出了非球形引力势函数,建立了航天器绕飞小天体的轨道动力学方程。

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14、

Topics extend to analysis of both aircraft flight dynamics and spacecraft attitude dynamics, based upon presented principles and equations of motion.

课题扩展分析了航天器飞行动力学和太空船飞行姿态动力学,这些建立在当前的运动理论和方程式上。

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15、

With PD and optimal control of classical control theory model of the spacecraft attitude dynamics modeling, and conducted a detailed MATLAB simulation.

并用PD及最优控制等经典控制理论对航天器姿态动力学模型进行了建模,并运用MATLAB进行了详细的仿真,得到了仿真结果。

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16、

A mathematical model derived from spacecraft attitude dynamics is treated as an example to demonstrate its application.

以一个呈现混沌姿态运动的航天器动力学模型为例说明了该控制律的应用。

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17、

Simulation Framework for Spacecraft Attitude Dynamics and Control Based on Matlab/ Simulink

基于Matlab/Simulink的航天器姿态动力学与控制仿真框架

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18、

The model of spacecraft attitude dynamics and the attitude control technology are generalized.

对航天器姿态动力学模型和姿态控制技术进行了概括和总结。

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19、

Firstly, the paper gives a sufficient condition of the system's stability, and analyzes its stability. Afterwards, a nonlinear spacecraft dynamics is decomposed into some subsystems, for which a decentralized adaptive controller is proposed.

首先给出该系统稳定的充分条件,分析其稳定性,然后针对一种空间飞行器的非线性动力学模型,通过变换分解成若干个子系统,进而对每个子系统进行分散自适应控制。

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