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   532篇
  免费   118篇
  国内免费   81篇
航空   362篇
航天技术   178篇
综合类   55篇
航天   136篇
  2024年   3篇
  2023年   20篇
  2022年   16篇
  2021年   42篇
  2020年   37篇
  2019年   39篇
  2018年   29篇
  2017年   36篇
  2016年   39篇
  2015年   30篇
  2014年   38篇
  2013年   38篇
  2012年   32篇
  2011年   40篇
  2010年   31篇
  2009年   26篇
  2008年   22篇
  2007年   36篇
  2006年   26篇
  2005年   16篇
  2004年   18篇
  2003年   16篇
  2002年   14篇
  2001年   21篇
  2000年   16篇
  1999年   10篇
  1998年   6篇
  1997年   3篇
  1996年   3篇
  1995年   4篇
  1994年   2篇
  1993年   2篇
  1992年   4篇
  1991年   6篇
  1990年   4篇
  1989年   2篇
  1988年   4篇
排序方式: 共有731条查询结果,搜索用时 15 毫秒
211.
五坐标数控机床后置处理算法   总被引:8,自引:0,他引:8  
根据五坐标数控机床的运动形式 ,将其归结为三种基本形式。本文针对五坐标数控机床的三种基本形式 ,研究了五坐标数控机床的后置处理算法。  相似文献   
212.
单目主动视觉无人机导引中摄像机内参数标定的线性方法   总被引:1,自引:0,他引:1  
王睿  李欣  张广军 《航空学报》2006,27(4):676-681
提出一种单目主动视觉无人机导引中摄像机内参数标定的线性方法,在摄像机主点位置进行预标定的条件下,摄像机只需拍摄一幅着舰平面靶标上的一组正方形图像,无须知道该组正方形的任何几何信息,通过计算圆环点,建立绝对二次曲线对摄像机内参数的约束方程即可线性求解摄像机内参数,仿真实验和真实图象实验表明:该方法在摄像机内参数(如焦距等)需要经常改变的视觉任务,如基于视觉的无人机着舰导引、运动参数估计、三维视觉重建及视觉监控中,使得摄像机内参数的标定具有简便、实时和鲁棒性强的特点。  相似文献   
213.
星载聚束式SAR天线波束指向控制分析   总被引:4,自引:1,他引:3  
建立了波束控制条件下的星载聚束式SAR的天线指向及成像数学模型,证实天线波束指向被控造成回波信号的幅度调制,引起成对回波,从而影响成像质量.此外,分析了波束指向控制比率与测绘带方位宽度、图像动态范围的制约关系,提出设计星载聚束式 SAR天线波束指向控制比率的基本原则.最后,通过计算机仿真,验证了理论分析的正确性.   相似文献   
214.
The attention to the periodic orbit in the Earth-Moon restricted three-body system continues to grow due to its special environment and locations. This research investigates the feasibility of constructing fuel-optimal single and multiple impulse transfers between unstable periodic orbits at L1 and L2 points. Invariant manifolds, which could provide the appropriate initial trajectories for optimization, are analyzed deeply to enable previously unknown orbit options and potentially to reduce mission cost. A global search strategy based on comparing the orbital state of the unstable and stable manifolds, incorporated with low-thrust techniques, is performed to seek a suitable matching point for maneuver application. Then the sequential quadratic programming (SQP) is adopted to further optimize the velocity increment and obtain the single/multiple impulse optimal transfers. The associated constraint gradients are derived to achieve higher accuracy and rapidity of the algorithm. To highlight the effectivity of the transfer scheme, three-dimensional low-energy transfers between different types and spatial regions of performing single and multiple impulses are explored. The total Delta-V required varies between a few meters per second and tens of meters per second, and the related flight time is about several weeks, mainly depending on the energy of periodic orbits and the invariant manifold structure. The results obtained in this paper can provide a useful reference for the selection of escape and capture site along the manifolds, maneuver magnitude and transfer time.  相似文献   
215.
The main challenge in real-time precise point positioning (PPP) is that the data outages or large time lags in receiving precise orbit and clock corrections greatly degrade the continuity and real-time performance of PPP positioning. To solve this problem, instead of directly predicting orbit and clock corrections in previous researches, this paper presents an alternative approach of generating combined corrections including orbit error, satellite clock and receiver-related error with broadcast ephemeris. Using ambiguities and satellite fractional-cycle biases (FCBs) of previous epoch and the short-term predicted tropospheric delay through linear extrapolation model (LEM), combined corrections at current epoch are retrieved and weighted with multiple reference stations, and further broadcast to user for continuous enhanced positioning during outages of orbit and clock corrections. To validate the proposed method, two reference station network with different inter-station distance from National Geodetic Survey (NGS) network are used for experiments with six different time lags (i.e., 5 s, 10 s, 15 s, 30 s, 45 s and 60 s), and one set of data collected by unmanned aerial vehicle (UAV) is also used. The performance of LEM is investigated, and the troposphere prediction accuracy of low elevation (e.g., 10–20degrees) satellites has been improved by 44.1% to 79.0%. The average accuracy of combined corrections before and after LEM is used is improved by 12.5% to 77.3%. Without LEM, an accuracy of 2–3 cm can be maintained only in case of small time lags, while the accuracies with LEM are all better than 2 cm in case of different time lags. The performance of simulated kinematic PPP at user end is assessed in terms of positioning accuracy and epoch fix rate. In case of different time lags, after LEM is used, the average accuracy in horizontal direction is better than 3 cm, and the accuracy in up direction is better than 5 cm. At the same time, the epoch fix rate has also increased to varying degrees. The results of the UAV data show that in real kinematic environment, the proposed method can still maintain a positioning accuracy of several centimeters in case of 20 s time lag.  相似文献   
216.
Integer ambiguity fixing with uncalibrated phase delay (UPD) products can significantly shorten the initialization time and improve the accuracy of precise point positioning (PPP). Since the tracking arcs of satellites and the behavior of atmospheric biases can be very different for the reference networks with different scales, the qualities of corresponding UPD products may be also various. The purpose of this paper is to comparatively investigate the influence of different scales of reference station networks on UPD estimation and user ambiguity resolution. Three reference station networks with global, wide-area and local scales are used to compute the UPD products and analyze their impact on the PPP-AR. The time-to-first-fix, the unfix rate and the incorrect fix rate of PPP-AR are analyzed. Moreover, in order to further shorten the convergence time for obtaining precise positioning, a modified partial ambiguity resolution (PAR) and corresponding validation strategy are presented. In this PAR method, the ambiguity subset is determined by removing the ambiguity one by one in the order of ascending elevations. Besides, for static positioning mode, a coordinate validation strategy is employed to enhance the reliability of the fixed coordinate. The experiment results show that UPD products computed by smaller station network are more accurate and lead to a better coordinate solution; the PAR method used in this paper can shorten the convergence time and the coordinate validation strategy can improve the availability of high precision positioning.  相似文献   
217.
Ionosphere delay is very important to GNSS observations, since it is one of the main error sources which have to be mitigated even eliminated in order to determine reliable and precise positions. The ionosphere is a dispersive medium to radio signal, so the value of the group delay or phase advance of GNSS radio signal depends on the signal frequency. Ground-based GNSS stations have been used for ionosphere monitoring and modeling for a long time. In this paper we will introduce a novel approach suitable for single-receiver operation based on the precise point positioning (PPP) technique. One of the main characteristic is that only carrier-phase observations are used to avoid particular effects of pseudorange observations. The technique consists of introducing ionosphere ambiguity parameters obtained from PPP filter into the geometry-free combination of observations to estimate ionospheric delays. Observational data from stations that are capable of tracking the GPS/BDS/GALILEO from the International GNSS Service (IGS) Multi-GNSS Experiments (MGEX) network are processed. For the purpose of performance validation, ionospheric delays series derived from the novel approach are compared with the global ionospheric map (GIM) from Ionospheric Associate Analysis Centers (IAACs). The results are encouraging and offer potential solutions to the near real-time ionosphere monitoring.  相似文献   
218.
水上飞机纵向稳定性判别方法研究   总被引:1,自引:0,他引:1  
水上飞机的稳定性不论在水上飞机的设计阶段还是试验阶段都是设计人员关注的焦点,稳定性是水上飞机在水面安全起降、滑行的保证。为解决传统水上飞机稳定性判别方法的难操作性,结合滑行艇稳定界限估算方法,对已开展且具有代表性的水上飞机单船身稳性试验结果进行了计算分析、总结,并采用数据优化等方法得到了纵稳性限界拟合方程,通过相关试验数据的逆向校核,证明了所得回归公式的准确性。经多次验证,方法不仅可以在开展单船身模型试验时用以确定后续工况,还能为水上飞机的纵向稳性性能研究提供参考。  相似文献   
219.
目前飞行器落点预报主要采用人机交互方式进行处理,而不同人员计算出的结果存在较大差异.针对该问题,提出了一种基于四阶龙格库塔计算方法的落点预报分布式计算统计分析模型.该模型根据飞行器的运行轨迹特性和在无动力、无控制、常质量段的预报落点具有集中分布的特点,采用零假设和备择假设统计方法对预报落点过滤选择,并对有效预报落点求其数学期望值.采用实际测量数据对所提出的模型进行了可行性和有效性验证,试验结果表明,该模型不仅具有较强的实时性、稳定性,而且当飞行器运行距离在数千千米时,该方法计算出的平面位置误差仅为几十米.  相似文献   
220.
控制问题中航空发动机飞行包线区域最优划分   总被引:8,自引:4,他引:4  
结合最优化理论和线性系统理论,对控制问题中航空发动机飞行包线区域划分方法展开了研究。分析了发动机线性状态空间模型与进气道出口气流总温总压参数有关特性。在此基础上定义了飞行包线内任意两飞行点间的广义距离,提出将飞行包线区域划分与标称点设计问题转化为一个基于该广义距离的最大覆盖优化问题,即选择尽量少的标称点实现对飞行包线区域的覆盖。以涡扇发动机及其进气道为例,采用文中方法对其包线区域进行了划分计算,并对标称点与其覆盖区域内最远点处发动机线性化模型进行了比较。结果表明,该区域划分和标称点选择的优化方法的有效性。  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