首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   1702篇
  免费   245篇
  国内免费   400篇
航空   998篇
航天技术   435篇
综合类   439篇
航天   475篇
  2024年   2篇
  2023年   14篇
  2022年   26篇
  2021年   29篇
  2020年   32篇
  2019年   19篇
  2018年   23篇
  2017年   31篇
  2016年   42篇
  2015年   60篇
  2014年   93篇
  2013年   80篇
  2012年   85篇
  2011年   109篇
  2010年   113篇
  2009年   124篇
  2008年   114篇
  2007年   97篇
  2006年   98篇
  2005年   85篇
  2004年   41篇
  2003年   61篇
  2002年   62篇
  2001年   67篇
  2000年   55篇
  1999年   88篇
  1998年   97篇
  1997年   107篇
  1996年   78篇
  1995年   58篇
  1994年   44篇
  1993年   64篇
  1992年   47篇
  1991年   52篇
  1990年   40篇
  1989年   34篇
  1988年   24篇
  1987年   21篇
  1986年   16篇
  1985年   4篇
  1984年   4篇
  1981年   3篇
  1980年   1篇
  1965年   1篇
  1900年   2篇
排序方式: 共有2347条查询结果,搜索用时 31 毫秒
1.
自适应噪声对消在很多领域有着重要应用。为了进行自适应噪声对消,提出了一种新的最速下降算法。该算法主要原理是对多元二次函数进行降维处理,使其变成一元二次函数,再应用抛物线的性质分别循环迭代地求解每一个维度上的极值。在自适应噪声对消应用中,所提算法与传统的自适应算法进行对比,具有收敛速度快,滤波效果好,滤波效果可调节,抗恶劣信噪比以及急剧变化信噪比,不需选择迭代步长,适合计算机和可编程硬件实现等优点。   相似文献   
2.
This paper describes the scientific objectives and payloads of Tianwen-1, China’s first exploration mission to Mars. An orbiter, carrying a lander and a rover, lifted-off in July 2020 for a journey to Mars where it should arrive in February 2021. A suite of 13 scientific payloads, for in-situ and remote sensing, autonomously commanded by integrated payload controllers and mounted on the orbiter and the rover will study the magnetosphere and ionosphere of Mars and the relation with the solar wind, the atmosphere, surface and subsurface of the planet, looking at the topography, composition and structure and in particular for subsurface ice. The mission will also investigate Mars climate history. It is expected that Tianwen-1 will contribute significantly to advance our scientific knowledge of Mars.  相似文献   
3.
中国月球探测进展(2011-2020年)   总被引:1,自引:0,他引:1  
回顾2011至2020年10年来中国月球探测的进展,重点介绍嫦娥三号和嫦娥四号任务工程实施情况以及取得的主要科学探测成果,展望中国月球和行星探测的未来发展.   相似文献   
4.
液体火箭发动机健康监控技术是改进和提高运载火箭、航天器可靠性与安全性的核心技术之一,对其进行研究具有重要的学术价值和工程应用价值。液体火箭发动机健康监控技术的研究主要包括液体火箭发动机故障检测与诊断理论方法、液体火箭发动机健康监控系统两方面。该文介绍了基于模型驱动的方法、基于数据驱动的方法和基于人工智能的方法,阐明了液体火箭发动机故障检测与诊断理论方法的研究现状,通过对美国液体火箭发动机典型健康监控系统的介绍,阐明了液体火箭发动机健康监控系统研究的若干进展及现状,并对液体火箭推进系统健康监控技术的演变趋势作了简要评述。  相似文献   
5.
针对微波电路三维集成结构的迫切需求,开展宽带高集成多级射频互连技术研究。主要设计了两种电路结构,多级水平互连电路与多级垂直互连电路。多级水平互连电路中,通过优化同轴-微带线的水平过渡以及倒角过渡方式,得到在DC~30GHz内的仿真结果,回波损耗优于21dB,插入损耗优于0.16dB;多级垂直互连电路中,通过优化BGA板间互连结构,得到在DC~30GHz内的仿真结果,信号的回波损耗优于13dB,插入损耗优于0.57dB。在小型化、高集成的需求下,宽带高集成多级射频互连技术是解决宽带射频信号传输问题的关键技术路径,可以广泛应用在微波电路三维集成结构中,具有重大的应用前景。  相似文献   
6.
Numerical simulations of unsteady flow problems with moving boundaries commonly require the use of geometric conservation law(GCL).However,in cases of unidirectional large mesh deformation,the cumulative error caused by the discrete procedure in GCL can significantly increase,and a direct consequence is that the calculated cell volume may become negative.To control the cumulative error,a new discrete GCL(D-GCL)is proposed.Unlike the original D-GCL,the proposed method uses the control volume analytically evaluated according to the grid motion at the time level n,instead of using the calculated value from the D-GCL itself.Error analysis indicates that the truncation error of the numerical scheme is guaranteed to be the same order as that obtained from the original D-GCL,while the accumulated error is greatly reduced.For validation,two challenging large deformation cases including a rotating circular cylinder case and a descending GAW-(1)two-element airfoil case are selected to be investigated.Good agreements are found between the calculated results and some other literature data,demonstrating the feasibility of the proposed D-GCL for unidirectional motions with large displacements.  相似文献   
7.
8.
通过Pro/Engineer建立行星滚柱丝杠三维模型,基于ANSYS Workbench有限元分析技术进行模态与谐响应分析,得到前六阶固有频率与各阶模态振型,确定共振频率,掌握对应频率下的位移峰值响应,并研究螺母处于不同工作位置时对固有频率的影响,为基于行星滚柱丝杠传动的舵系统抗振设计提供数据支撑。  相似文献   
9.
The purpose of the present study was to analyze and predict the changes in acceleration tolerance of human vertebra as a result of bone loss caused by long-term space flight. A human L3–L4 vertebra FEM model was constructed, in which the cancellous bone was separated, and surrounding ligaments were also taken into account. The simulation results demonstrated that bone loss has more of an effect on the acceleration tolerance in x-direction. The results serve to aid in the creation of new acceleration tolerance standards, ensuring astronauts return home safely after long-term space flight. This study shows that more attention should be focused on the bone degradation of crew members and to create new protective designs for space capsules in the future.  相似文献   
10.
The full dynamics of spacecraft around an asteroid, in which the spacecraft is considered as a rigid body and the gravitational orbit–attitude coupling is taken into account, is of great value and interest in the precise theories of the motion. The spectral stability of the classical relative equilibria of the full spacecraft dynamics around an asteroid is studied with the method of geometric mechanics. The stability conditions are given explicitly based on the characteristic equation of the linear system matrix. It is found that the linearized system decouples into two entirely independent subsystems, which correspond to the motions within and outside the equatorial plane of the asteroid respectively. The system parameters are divided into three groups that describe the traditional stationary orbit stability, the significance of the orbit–attitude coupling and the mass distribution of the spacecraft respectively. The spectral stability of the relative equilibria is investigated numerically with respect to the three groups of system parameters. The relations between the full spacecraft dynamics and the traditional spacecraft dynamics, as well as the effect of the orbit–attitude coupling, are assessed. We find that when the orbit–attitude coupling is strong, the mass distribution of the spacecraft dominates the stability of the relative equilibria; whereas when the orbit–attitude coupling is weak, both the mass distribution and the traditional stationary orbit stability have significant effects on the stability. We also give a criterion to determine whether the orbit–attitude coupling needs to be considered.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号