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1.
通过对部位安排原则的讨论,结合实例,介绍该类导弹常见的部位安排形式。通过地体制和任务的分析,归纳出该类导弹结构上的特点,列举出反映辽些特点的具体结构实例。 相似文献
2.
本文用光学法与广义散射矩阵技术相结合的方法,根据波导在入射平面电磁波照射下所激励的波导模式,分析了终端短路金属圆波导的电磁散射特性。在此基础上,假设金属波导内壁涂层厚度τ远小于波导半径a,且波导入口段的涂层厚度从零线性增加至τ,运用微扰法求出终端短路涂层金属圆波导内各波导模的传播常数,从而获得涂层圆波导的电磁散射特性。通过计算机仿真,计算了终端短路涂层金属圆波导的雷达截面(RCS),并与相同条件下内壁无涂层金属圆波导的雷达截面进行比较,结果令人满意。 相似文献
3.
红外焦平面阵列非均匀校正算法的研究 总被引:2,自引:0,他引:2
为解决固定图案噪声污染的红外焦平面图像序列的非均匀校正问题 ,文中采用时域高通滤波算法完成固定图案噪声污染图像的预处理 ,给出固定图案噪声初值 ,并结合传统的红外焦平面迭代非均匀校正算法 ,有效地解决了较高强度固定图案噪声污染图像的非均匀校正问题。与采用黑体基准获取固定图案噪声初值的方法相比 ,该算法降低了成像系统的机械复杂性 ,提高了算法的应用范围。文中最后用红外图像序列进行了验证 相似文献
4.
飞机系统可靠性的电磁兼容预测研究 总被引:2,自引:0,他引:2
蔡仁钢 《北京航空航天大学学报》1995,21(4):41-46
对飞机可靠性工程中的有关系统内电磁瘘容性分析和预测程序进行了研究开发,详细论述了天线对天线干扰的传播模型、导线与导线间的耦合模型、电磁场对导线的感应模型、设备对设备的耦合模型以及其编程语言、输入数据处理方法等开发技术。给出其计算结果,并与实验数据作了比较,结果表明,可提高系统的可靠性。 相似文献
5.
核事故发生时,可靠、准确的源项信息能为应急防护行动措施决策提供数据支持。采用Matlab软件神经网络工具箱可以实现基于BP神经网络的核事故源项反演,为提高核事故源项反演计算的准确度,针对反演时的几个重要参数进行研究,包括隐含层节点数、训练函数、学习率和隐含层数。研究结果表明,在单隐含层神经网络结构情况下,存在着最优隐含层节点数,综合考虑训练时间和误差,本文选取隐含层节点数为50来对其他参数影响进行进一步研究;在相同参数设置条件下,训练函数Trainlm比Traingdm更适合数据量较小时的核事故源项反演,反演计算准确度更高,在节点数为50时训练时间缩短了近35%;高学习率以及双隐含层能有效地提高核事故源项反演的精度,但训练时间相对增加。 相似文献
6.
《Acta Astronautica》2014,93(2):512-516
One of the most important reasons why unsuccessful results have been obtained so far by the SETI Project is due to the fact that no sure targets to aim at have been available up-to the present state of research. All-sky surveys, even if very accurate and complete, might result to be time-consuming. SETI needs at least one effective “viewfinder” in order that a true targeted research is carried out with a possible success. The best foundation to get this can be identified with the search for the evidence of extraterrestrial astro-engineering activity in form of the Dyson spheres predicted by theory. The existence of such stellar objects can be ascertained by finding the evidence of two main signatures in stars of solar spectral type: infrared excess and anomalous light curves due to transiting artificial objects. These are probably the most powerful viewfinders in order to allow SETI techniques for intelligent signal search to be aimed at more appropriate targets. This paper is not intended to be a research paper but rather a review paper whose goal is not to present calculations and/or operational research but rather to be a research proposal for a more focused research in SETI just using Dyson Spheres as crucial markers. 相似文献
7.
M. Storini F. SignorettiP. Diego F. ReM. Laurenza 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
The Antarctic Laboratory for Cosmic Rays (LARC, acronym for Laboratorio Antartico per i Raggi Cosmici or Laboratorio Antártico para Rayos Cósmicos) operates on King George Island (South Shetlands). Since January 1991 a standard 6NM-64 detector has been recording continuous cosmic ray measurements and several Ground-Level Enhancements have been registered. Here we describe the different phases performed in Italy for the realization of a 3NM-64_3He detector, which started its measurements during the Italian XXII Antarctic Summer Campaign. Data recorded during solar activity cycle 24 will furnish an useful research tool for the next Solar Extreme Events. 相似文献
8.
神舟2号大气密度探测器的探测结果(Ⅰ)日照和阴影区域热层大气密度变化 总被引:3,自引:2,他引:1
选用了神舟2号(SZ-2)大气密度探测器在2001年2—4月间的探测数据,进行日照和阴影区域热层大气密度变化的探讨.结果表明:在高度410km附近,日照和阴影区域大气密度变幅为2—3倍,变幅的大小与地磁活动程度呈负相关关系.日照面大气密度峰区位于星下点地方时1400—1500LT的纬度处,峰值大小与太阳活动程度呈正相关关系.阴影面大气密度谷区位于星下点地方时0400-0500的纬度处,同时在±10°纬度区域中还出现了阴影面峰区. 相似文献
9.
10.
Facundo L. Poblet Francisco Azpilicueta 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(9):2275-2289
The Earth and the near interplanetary medium are affected by the Sun in different ways. Those processes generated in the Sun that induce perturbations into the Magnetosphere-Ionosphere system are called geoeffective processes and show a wide range of temporal variations, like the 11-year solar cycle (long term variations), the variation of ~27?days (recurrent variations), solar storms enduring for some days, particle acceleration events lasting for some hours, etc.In this article, the periodicity of ~27?days associated with the solar synodic rotation period is investigated. The work is mainly focused on studying the resulting 27-day periodic signal in the magnetic activity, by the analysis of the horizontal component of the magnetic field registered on a set of 103 magnetic observatories distributed around the world. For this a new method to isolate the periodicity of interest has been developed consisting of two main steps: the first one consists of removing the linear trend corresponding to every calendar year from the data series, and the second one of removing from the resulting series a smoothed version of it obtained by applying a 30-day moving average. The result at the end of this process is a data series in which all the signal with periods larger than 30?days are canceled.The most important characteristics observed in the resulting signals are two main amplitude modulations: the first and most prominent related to the 11-year solar cycle and the second one with a semiannual pattern. In addition, the amplitude of the signal shows a dependence on the geomagnetic latitude of the observatory with a significant discontinuity at approx. ±60°.The processing scheme was also applied to other parameters that are widely used to characterize the energy transfer from the Sun to the Earth: F10.7 and Mg II indices and the ionospheric vertical total electron content (vTEC) were considered for radiative interactions; and the solar wind velocity for the non-radiative interactions between the solar wind and the magnetosphere. The 27-day signal obtained in the magnetic activity was compared with the signals found in the other parameters resulting in a series of cross-correlations curves with maximum correlation between 3 and 5?days of delays for the radiative and between 0 and 1?days of delay for the non-radiative parameters. This result supports the idea that the physical process responsible for the 27-day signal in the magnetic activity is related to the solar wind and not to the solar electromagnetic radiation. 相似文献