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   1281篇
  免费   295篇
  国内免费   280篇
航空   826篇
航天技术   397篇
综合类   125篇
航天   508篇
  2024年   4篇
  2023年   32篇
  2022年   42篇
  2021年   42篇
  2020年   71篇
  2019年   75篇
  2018年   86篇
  2017年   58篇
  2016年   58篇
  2015年   64篇
  2014年   76篇
  2013年   78篇
  2012年   90篇
  2011年   121篇
  2010年   105篇
  2009年   95篇
  2008年   81篇
  2007年   90篇
  2006年   85篇
  2005年   89篇
  2004年   59篇
  2003年   60篇
  2002年   40篇
  2001年   43篇
  2000年   36篇
  1999年   26篇
  1998年   21篇
  1997年   20篇
  1996年   14篇
  1995年   15篇
  1994年   8篇
  1993年   15篇
  1992年   11篇
  1991年   14篇
  1990年   8篇
  1989年   8篇
  1988年   10篇
  1987年   4篇
  1986年   2篇
排序方式: 共有1856条查询结果,搜索用时 656 毫秒
381.
数字滤波在动态测量数据处理中的应用   总被引:2,自引:0,他引:2  
介绍了数字滤波的原理。着重讨论了带通、点阻、带阻数字滤波器在动态测量数据处理中应用于功率谱密度计算;并提出在动态测量数据处理中应用数字滤波的建议。  相似文献   
382.
介绍了自动相关监视系统的基本概念,构成原理和与实施相关的研究与开发工作,特别是重点介绍了以PC机为基础的ADS信息处理系统的成果,最后还介绍了ADS运行情况。  相似文献   
383.
研究基于空载雷达测量下的机动目标状态估计器的设计问题。通过建立直角坐标状态方程和选取一种伪测量量,并采用测量模型线性化的方法,建立起了估计器的基本结构,在此基础上增加距离通道的冗余滤波,进一步提高距离通道的估计精度,最后将估计器联入整个综合火力/飞行控制系统中,进行了Monte Carlo仿真,仿真结果表明,设计的目标状态估计器具有很好的跟踪估计性能。  相似文献   
384.
王运锋  费向东 《宇航学报》2006,27(Z1):150-154
交互多模式(IMM)是一种有效的机动目标跟踪算法,但由于其要求具有很多的先验前提条件而不利于工程实现.研究了一种杂波环境下更适合于工程实现的机动目标(同样适用非机动目标)的跟踪算法,该算法通过一种由测量位置估计误差决定的机动检测函数来实现杂波背景中的机动目标检测,并通过改变Kalman滤波的相关参数,实现自适应跟踪.该算法克服了IMM算法的模式限制和复杂性,同时也避免了对非机动目标的跟踪中,在跟踪模式间相互切换时所换造成的影响.通过在空管系统(ATC)的大量模拟实验,验证了该算法的有效性和重大应用价值.  相似文献   
385.
在简要介绍了飞行器视觉图像定位导航原理及模型的基础上,针对其非线性模型的推广Kalman滤波的收敛与初始条件有关的问题,将其定位导航的两种模型(线性与非线性模型)组合,提出了双模态双滤波器滤波方法。这种滤波能很好地解决非线性推广Kalman滤波的收敛问题。通过第一个线性滤波器的滤波估计给第二个非线性滤波器提供滤波初值,使这一非线性滤波收敛,并能取得较高的滤波精度。  相似文献   
386.
孟东  缪玲娟  邵海俊  沈军 《宇航学报》2018,39(8):905-912
针对捷联惯性导航系统(SINS)大失准角初始对准的滤波过程,提出简化七阶正交容积卡尔曼滤波算法(7th-SCQKF)。根据简化容积卡尔曼滤波(CKF)理论,推导出改进的简化七阶CKF算法(7th-MSSRCKF),改进了原简化七阶CKF(7th-SSRCKF)的性能;同时,在7th-SSRCKF和7th-MSSRCKF基础上,引入正交半径准则,提出简化七阶CQKF(7th-SCQKF)算法,提高了滤波精度;并将简化七阶CQKF(7th-SCQKF)算法应用到SINS的大失准角初始对准仿真中,结果表明,7th-SCQKF比7th-MSSRCKF的滤波精度高,验证了新算法的正确性和有效性。  相似文献   
387.
The localization of a stationary transmitter using moving receivers is considered. The original Direct Position Determination (DPD) methods, with combined Time Difference of Arrival (TDOA) and Frequency Difference of Arrival (FDOA), do not perform well under low Signal-to-Noise Ratio (SNR), and worse still, the computation cost is difficult to accept when the computational capabilities are limited. To get better positioning performance, we present a new DPD algorithm that proves to be more computationally efficient and more precise for weak signals than the conventional approach. The algorithm partitions the signal received with the same receiver into multiple non-overlapping short-time signal segments, and then uses the TDOA, the FDOA and the coherency among the short-time signals to locate the target. The fast maximum likelihood estimation, one iterative method based on particle filter, is designed to solve the problem of high computation load. A secondary but important result is a derivation of closed-form expressions of the Cramer-Rao Lower Bound (CRLB). The simulation results show that the algorithm proposed in this paper outperforms the traditional DPD algorithms with more accurate results and higher computational efficiency, and especially at low SNR, it is more close to the CRLB.  相似文献   
388.
Ionosphere delay correction is the main error correction to the computation of single frequency user position using satellite navigation. However ionosphere delay consists of not only delay but also frequency dependent differential hardware biases from satellite and receiver ends. For ionosphere point of view, Indian Regional Navigation Satellite System (IRNSS) service area comes in equatorial anomaly region. It is a unique satellite navigation system which operates at L5 and S frequencies and consists of Geostationary Earth Orbit (GEO) and Geo Synchronous Orbit (GSO) satellite constellation. With IRNSS measurements availability, there is a good opportunity to estimate and analyse differential hardware biases with GEO/GSO combination and with equatorial ionosphere variation. In this paper, Kalman filter based estimation with triangular interpolation technique is used to estimate differential hardware biases for all IRNSS satellites and reference receivers at L5 frequency. The standard deviation of the 15?days of daily estimation of satellite differential hardware biases is in the range of 0.32 to 1.17 TECU for all IRNSS satellites. Similarly, the standard deviation of the 15?days of daily estimation varies up to 2.85 and 6.0 TECU for receiver differential hardware biases during calm and stormy period respectively. The ionosphere delay computed using estimated differential hardware biases is compared with Global Ionosphere Map (GIM) data. A rigorous analysis is carried out to study the error in the estimation in terms of input data noise level, satellite constellation and effect of latitude. Our result reveals that over IRNSS service area, there is an exponential increase in the error in the estimation of receiver differential hardware biases with respect to latitude.  相似文献   
389.
芯片原子钟是具有小体积,低功耗特点的原子钟。本文采用了IIR滤波器方案对芯片原子钟物理系统输出信号进行处理,该方案有利于减小芯片原子钟的体积、提高芯片原子钟短期频率稳定度。实验结果表明,与FIR滤波方案相比,IIR滤波器使用的FPGA资源减小了约58%;与现有模拟滤波方案相比,使用IIR滤波器方案的芯片原子钟频率稳定度提高了1.4×10~(-10)τ~(-1/2)(τ=1s-100s),电路面积减小了10%。  相似文献   
390.
《中国航空学报》2016,(6):1649-1663
Noises always disturb the control effect of an environment test especially in multi-input multi-output (MIMO) systems. If the frequency response function matrices are ill-conditioned, the noises in the driving forces will be amplified and the response spectral lines may awfully exceed their tolerances. Most of the major biases between the response spectra and the reference spectra are pro-duced by the amplified noises. However, ordinary control algorithms can hardly reduce the level of noises. The influences of the noises on both the auto-and cross-power spectra are analyzed in this paper. As a conventional frequency domain method on the inverse problem, the Tikhonov filter is adopted in the environment test to suppress the exceeding spectral lines. By altering regularization parameters gradually, the auto-power spectra can be improved in a closed control loop. Instead of using the traditional way of selecting regularization parameters, we observe the coherence change to estimate noise eliminations. Incidentally, the requirement of coherence control can be realized. The errors of the phase are then studied and a phase control algorithm is introduced at the end as a sup-plement of cross-power spectra control. The Tikhonov filter and the proposed phase control algo-rithm are tested numerically and experimentally. The results show that the noises in the vicinity of lightly damped resonant peaks are more stubborn. The response spectra are able to be greatly improved by the combination of these two methods.  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