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331.
航母编队在防空时,通常利用舰载警戒直升机机载警戒雷达探测距离远的优势实施对空预警,以提高编队防空作战能力。通过分析航母编队在舰载战斗机甲板待战情况下的防空作战过程,建立了警戒直升机前出距离的数学模型,仿真分析了模型中有关参数对警戒直升机前出距离的影响,为确定警戒直升机在航母编队防空作战中的前出距离提供了参考依据。 相似文献
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针对立方星轨道机动能力约束,提出一种基于相对轨道根数动力学模型的多脉冲机动规划算法。对于相对轨道面内各分量之间的控制耦合问题,基于“先控制相对形状、后修正迹向距离”的策略,提出了满足速度增量约束的多脉冲机动规划算法;分析了近地轨道 J 2 摄动和大气阻力摄动对相对轨道的影响,并基于线性化的状态转移模型提出了迭代优化策略,以降低立方星在摄动影响下的轨道机动误差。仿真结果表明,所提出的多脉冲机动规划算法在不同任务条件下均可获得有效的机动规划,迭代优化策略可有效地提高终点位置的精度,在基于高精度轨道递推搭建的任务仿真中也验证了算法的有效性,可用于立方星编队构建和重构任务。 相似文献
336.
All four giant planets in the solar system possess irregular satellites, characterized by large, highly eccentric and/or highly
inclined orbits. These bodies were likely captured from heliocentric orbit, probably in association with planet formation
itself. Enabled by the use of large-format digital imagers on ground-based telescopes, new observational work has dramatically
increased the known populations of irregular satellites, with 74 discoveries in the last few years. A new perspective on the
irregular satellite systems is beginning to emerge.We find that the number of irregular satellites measured to a given diameter
is approximately constant from planet to planet. This is surprising, given the radically different formation scenarios envisioned
for the gas giants Jupiter and Saturn compared to the (much less massive and compositionally distinct) ice giants Uranus and
Neptune. We discuss the new results on the irregular satellites and show how these objects might be used to discriminate amongst
models of giant planet formation. 相似文献
337.
典型二次曲面实时成象的改进算法 总被引:2,自引:0,他引:2
在旋转的空间几何模型的Phong光照模型分析基础上,基于以往的二次曲面等灰度理论,提出了一种新的镜面反射模型和投影等灰度线生成算法,该算法很好地解决了典型二次曲面在三维空间旋转任意角度之后实时地生成Phong模型光照图象,为二次曲面图元接拼形体奠定了良好的基础。 相似文献
338.
The James Webb Space Telescope 总被引:4,自引:0,他引:4
Jonathan P. Gardner John C. Mather Mark Clampin Rene Doyon Matthew A. Greenhouse Heidi B. Hammel John B. Hutchings Peter Jakobsen Simon J. Lilly Knox S. Long Jonathan I. Lunine Mark J. Mccaughrean Matt Mountain John Nella George H. Rieke Marcia J. Rieke Hans-Walter Rix Eric P. Smith George Sonneborn Massimo Stiavelli H. S. Stockman Rogier A. Windhorst Gillian S. Wright 《Space Science Reviews》2006,123(4):485-606
The James Webb Space Telescope (JWST) is a large (6.6 m), cold (<50 K), infrared (IR)-optimized space observatory that will be launched early in the next decade into orbit around the second Earth–Sun Lagrange point. The observatory will have four instruments: a near-IR camera, a near-IR multiobject spectrograph, and a tunable filter imager will cover the wavelength range, 0.6 < ; < 5.0 μ m, while the mid-IR instrument will do both imaging and spectroscopy from 5.0 < ; < 29 μ m.The JWST science goals are divided into four themes. The key objective of The End of the Dark Ages: First Light and Reionization theme is to identify the first luminous sources to form and to determine the ionization history of the early universe. The key objective of The Assembly of Galaxies theme is to determine how galaxies and the dark matter, gas, stars, metals, morphological structures, and active nuclei within them evolved from the epoch of reionization to the present day. The key objective of The Birth of Stars and Protoplanetary Systems theme is to unravel the birth and early evolution of stars, from infall on to dust-enshrouded protostars to the genesis of planetary systems. The key objective of the Planetary Systems and the Origins of Life theme is to determine the physical and chemical properties of planetary systems including our own, and investigate the potential for the origins of life in those systems. Within these themes and objectives, we have derived representative astronomical observations.To enable these observations, JWST consists of a telescope, an instrument package, a spacecraft, and a sunshield. The telescope consists of 18 beryllium segments, some of which are deployed. The segments will be brought into optical alignment on-orbit through a process of periodic wavefront sensing and control. The instrument package contains the four science instruments and a fine guidance sensor. The spacecraft provides pointing, orbit maintenance, and communications. The sunshield provides passive thermal control. The JWST operations plan is based on that used for previous space observatories, and the majority of JWST observing time will be allocated to the international astronomical community through annual peer-reviewed proposal opportunities. 相似文献
339.
Low-Earth-Orbit(LEO) formation-flying satellites have been widely applied in many kinds of space geodesy. Precise Relative Orbit Determination(PROD) is an essential prerequisite for the LEO formation-flying satellites to complete their mission in space. The contribution of the BeiDou Navigation Satellite System(BDS) to the accuracy and reliability of PROD of LEO formation-flying satellites based on a Global Positioning System(GPS) is studied using a simulation method. Firstly, when BDS is added to GPS, the mean number of visible satellites increases from9.71 to 21.58. Secondly, the results show that the 3-Dimensional(3 D) accuracy of PROD, based on BDS-only, GPS-only and BDS + GPS, is 0.74 mm, 0.66 mm and 0.52 mm, respectively. When BDS co-works with GPS, the accuracy increases by 29.73%. Geostationary-Earth-Orbit(GEO) satellites and Inclined Geosynchronous-Orbit(IGSO) satellites are only distributed over the Asia-Pacific region; however, they could provide a global improvement to PROD. The difference in PROD results between the Asia-Pacific region and the non-Asia-Pacific region is not apparent. Furthermore, the value of the Ambiguity Dilution Of Precision(ADOP), based on BDS + GPS, decreases by 7.50% and 8.26%, respectively, compared with BDS-only and GPS-only. Finally, if the relative position between satellites is only a few kilometres, the effect of ephemeris errors on PROD could be ignored. However, for a several-hundred-kilometre separation of the LEO satellites, the SingleDifference(SD) ephemeris errors of GEO satellites would be on the order of centimetres. The experimental results show that when IGSO satellites and Medium-Earth-Orbit(MEO) satellites co-work with GEO satellites, the accuracy decreases by 17.02%. 相似文献
340.
Ulrich Ott 《Space Science Reviews》2007,130(1-4):87-95
Small amounts of pre-solar “stardust” grains have survived in the matrices of primitive meteorites and interplanetary dust
particles. These grains—formed directly in the outflows of or from the ejecta of stars—include thermally and chemically refractory
carbon materials such as diamond, graphite and silicon carbide; as well as refractory oxides and nitrides. Pre-solar silicates,
which have only recently been identified, are the most abundant type except for possibly diamond. The detailed study with
modern analytical tools, of isotopic signatures in particular, provides highly accurate and detailed information with regard
to stellar nucleosynthesis and grain formation in stellar atmospheres. Important stellar sources are Red Giant (RG) and Asymptotic
Giant Branch (AGB) stars, with supernova contributions apparently small. The survival of those grains puts constraints on
conditions they were exposed to in the interstellar medium and in the early solar system. 相似文献