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991.
随着军事信息化程度越来越高,军事卫星通信已成为军事通信和战场通信的重要组成部分。卫星通信干扰和抗干扰技术已受到各国的重视。文章首先分析了干扰卫星通信系统的几种途径,然后分析了无人机在干扰卫星通信系统中的应用及优势。 相似文献
992.
Strategies for in-orbit calibration of drag-free control systems 总被引:3,自引:0,他引:3
Michel Silas Guilherme Waldemar Castro Leite Filho Stephan Theil 《Aerospace Science and Technology》2008,12(5):365-375
Drag-Free Satellites (DFS) are a class of scientific satellite missions designed for research on fundamental physics as well as geodesy. They consist, basically, of a small inner satellite (test mass) located in a cavity inside a larger satellite, the normal one. The Drag-Free Attitude Control System (DFACS) is the most complex technology on-board these satellites. This key technology allows the residual accelerations on experiments on board the satellites to be significantly reduced. In order to achieve this very low disturbance environment (for some missions <10−14 g) the drag-free control system has to be optimized. This optimization process is required because of uncertainties in system parameters that demand a robustness of the control system. This paper will present approaches for in-orbit calibration of drag-free control systems. The discussion includes modeling, with scale factors and cross couplings, possible excitation signals, comparison of different parameter identification/estimation methods as well as simulation results. 相似文献
993.
为飞机等交通工具内的用户提供基于卫星的不间断IP连接,并在卫星星座网络内实现IP路由选择功能,是未来LEO卫星星座通信网络需要解决的关键问题。提出了基于移动式网络技术的LEO卫星星座通信网络体系结构,实现了卫星星座通信网络中的IP路由选择功能,并降低了对地面网路的依赖,实现了对用户段网络随时随地的连接支持。在对卫星星座通信网络中的星地切换模式进行分析的基础上,提出了一种基于虚拟移动路由器的快速星地切换和认证方法。通过NS2仿真试验,给出了新型LEO卫星星座通信网络的传输延迟特性以及快速切换方法的仿真试验结果。仿真试验表明,提出的网络结构是满足未来卫星星座发展需求的,星地间的切换是低时延的。 相似文献
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阐述了通用英语(EGP)与专门用途英语(ESP)的区别与联系,分析了陆空通话英语(RTFE)教学中实施EGP+ESP模式的理论依据和现实可行性,并从课程设计、教学方法、教师队伍建设、教材建设和教学效果评估等方面详细介绍了该模式的具体实施办法。 相似文献
997.
Modeling and attitude control methods for a satellite with a large deployable antenna are studied in the present paper. Firstly, for reducing the model dimension, three dynamic models for the deploying process are developed, which are built with the methods of multi-rigid-body dynam- ics, hybrid coordinate and substructure. Then an attitude control method suitable for the deploying process is proposed, which can keep stability under any dynamical parameter variation. Subse- quently, this attitude control is optimized to minimize attitude disturbance during the deploying process. The simulation results show that this attitude control method can keep stability and main- tain proper attitude variation during the deploying process, which indicates that this attitude con- trol method is suitable for practical applications. 相似文献
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999.
Rosemary Morrow Pierre-Yves Le Traon 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
The paper provides a review of recent results on mesoscale ocean dynamics derived from satellite altimetry. Since 1992, we have had an unprecedented 18 year high-resolution monitoring of the ocean mesoscale field. Altimetry is often used in mesoscale studies in synergy with other remote sensing techniques and in situ data. This global, high-resolution data set has allowed oceanographers to quantify the previously unknown seasonal and interannual variations in eddy kinetic energy and eddy heat and salt transports, and investigate their causes. Eddy tracking techniques have allowed us to monitor their propagation pathways, to bring to light the meridional divergence of cyclones and anticyclones, and to question the role of Rossby waves versus non-linear eddies in the mid to high latitude bands. Altimetry has also revealed the presence of zonal fronts and jets everywhere in the ocean, and brought to light how mesoscale eddies can impact back onto the atmospheric circulation. Finally, altimetry, in synergy with other observations and high-resolution numerical models, has helped reveal the complexity of the sub-mesoscale features, associated with stirring and mixing around the mesoscale eddies, of great importance for the vertical exchange of oceanic tracers. Altimetry has revealed the complexity of the mesoscale system… the scientific community is now working to understand the interplay between these mesoscale eddies, the ocean interior and its impact on the overlying atmosphere. 相似文献
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