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561.
机舰适配性是舰载飞机总体设计的核心内容之一。近年来,随着不同作战用途舰载机及舰载无人机的上舰服役,舰机总体单位对机舰电磁兼容适配越来越重视,随着多种舰载机编队协同作战,机舰平台频谱资源愈发紧张,机舰电磁兼容性问题越来越突出,机舰电磁兼容适配性的影响也愈发突出,频谱不兼容导致的问题严重影响舰载机的作战性能。尤其是以无线电测控链为主要通信方式的舰载无人机,飞机测控系统布置在母舰上,无论是电磁安全问题,还是电磁频谱兼容问题都将更加突出。主要闸述舰载机,尤其是舰载无人作战飞机上舰后,从舰载机机舰电磁兼容适配的主要需求为切人点,从机舰作为一体化装备的角度,阐明了机舰电磁兼容适配设计的诸多要素。依据如何更好地发挥作战能力的原则,对机舰电磁兼容适配设计做了较为系统的描述。 相似文献
562.
在5G高速发展的背景下,为实现机舱内部信息传输的无线化,设计了一款用于飞机设备舱内无线通信的毫米波微带阵列天线。结合串联馈电和并联馈电优点,采用串并联结合的方式对馈电网络进行设计。通过泰勒综合法实现阵元的同相位不等幅馈电,在保证高增益的情况下,有效地进行副瓣抑制。综合以上方法,设计出了一款中心频率为 48 GHz;在 47.3 ~48.7 GHz之间回波损耗小于-10 dB,工作带宽1.4 GHz;H 面上的半功率波束宽度小于 11°,副瓣抑制为-28 dB:E面上的半功率波束宽度小于 17°,副瓣抑制优于-21 dB 的4x8 微带天线阵,该阵列天线很好地实现了高增益/地旁瓣的特性。 相似文献
563.
P. Rafanelli S. Ciroi V. Cracco F. Di Mille D. Ilić G. La Mura L.Č. Popović 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
It is becoming clear that we can define two different types of nearby AGN belonging to the Seyfert 1 class (S1), on the basis of the match of the intensities of their Broad Balmer Lines (BBL) with the Boltzmann Plots (BP). These two types of S1 galaxies, that we call BP-S1 and NoBP-S1, are characterized, in first approximation, by Broad Line Regions (BLR) with different structural and physical properties. In this communication, we show that these features can be well pointed out by a multi-wavelength analysis of the continuum and of the broad recombination Hydrogen lines, that we carry out on a sample of objects detected at optical and X-ray frequencies. The investigation is addressed to verify whether BP-S1 are the ideal candidates for the study of the kinematical and structural properties of the BLR, in order to derive reliable estimates of the mass of their central engine and to constrain the properties of their nuclear continuum spectrum. 相似文献
564.
M.C. Rabello Soares A.B. Rabiu N. Gopalswamy B.J. Thompson J.M. Davila A.A. Sobrinho 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008
The International Heliophysical Year (IHY) is an international program of scientific research to advance our understanding of the physical processes that govern the Sun, Earth and heliosphere. It has a strong educational component, linking research and education. Here, we describe the outreach activities during the 2006 total solar eclipse sponsored by IHY. 相似文献
565.
Statistical study of electrostatic solitary waves associated with reconnection: Geotail observations
S.Y. Li X.H. Deng M. Zhou R.X. Tang K. Liu H. Kojima H. Matsumoto 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
The role of waves in the dynamics of the magnetotail has long been a topic of interest in magnetospheric physics. The characteristics of Electrostatic Solitary Waves (ESWs) associated with reconnection have been studied statistically in the magnetotail by surveying the large amounts data obtained from Waveform Capture (WFC) which is an important component of Plasma Wave Instrument (PWI) on the Geotail spacecraft. About 150 reconnection events with WFC data available are selected, and approximately 10 thousands of ESW waveforms are picked up by hands for statistical study. The ESWs are observed near diffusion region and near the plasma sheet boundary layer (PSBL). Two kinds of waveforms of ESWs are observed: bi-polar and tri-polar pulses. It is found that the pulse width of the ESWs is in the order of 1–5 ms and the peak-to-peak amplitude is in the order of 0.1–5 mV/m. The amplitudes of ESWs are larger in the near-earth tail region than that in deep tail region. ESWs have been observed with or without guide magnetic field 〈By〉. The characteristics of ESWs in different reconnection region and under different strength of guild magnetic field, their possible generation mechanism will be discussed. 相似文献
566.
导航系统的性能与其可观测性密切相关,而可观测矩阵是分析导航系统可观测性能的重要依据。本文基于分段线性定常系统(PWCS)方法给出导航系统的可观测矩阵,进而针对测角测速组合导航系统开展可观测性分析。通过分析测角测速组合导航系统可观测矩阵的秩和条件数,得到导航系统的可观测性和整体可观测度,并研究导航系统的可观测阶数对导航系统的影响;同时基于奇异值分解(SVD)方法给出测角测速组合导航系统各个状态分量的可观测性分析方法。最后,以小行星探测工程任务巡航段为背景,系统地给出了不同量测模型的导航系统可观测性结果,分析了不同可观测性分析方法对导航系统可观测性刻画的适用性。本文所提出的可观测性分析方法,对导航系统可观测性分析具有很好的参考性,可为组合导航系统量测模型的优选提供参考,具有良好的理论和应用价值。 相似文献
567.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(3):1840-1854
We present an analysis of the time-intensity profiles of 25 solar energetic proton events at 18.2 MeV, modelled by fitting an analytical function form (a modified Weibull function) to the observed intensities. Additionally relying on previous work that characterized the magnetic connectivity between the event-related solar flare and the observer in these events with three angular parameters, we investigate the fit function parameters, the connectivity parameters, and the iron-to-carbon ratio of the events for dependencies and correlations. We find that the fit parameter controlling the basic shape of the profile (parameter a) is not clearly dependent on the connectivity parameters or the Fe/C ratio, suggesting that the profile shapes of neither well and weakly connected nor generally “impulsive” and “gradual” events differ systematically during the early stages of the event at 1 AU. In contrast, the time scaling of the fit function (parameter b) is at least moderately correlated with both the magnetic connectivity parameters and the Fe/C ratio, in that well-connected and iron-rich events are typically shorter in relative duration than weakly connected and nominal-abundance events; intensity rise times display a similar correlation with the connectivity parameters. We interpret the former result as following from the combined effect of various transport processes acting on the particles in interplanetary space, while the latter is essentially consistent with established knowledge regarding the observed dependence of the time-intensity profile shapes of solar energetic particle events on their magnetic connectivity and heavy ion abundances. The desirability of modelling the particle transport effects in detail and extending the analysis to cover higher energies is indicated. 相似文献
568.
P. Mazzei A. Marino R. Rampazzo G. Galletta D. Bettoni 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
We are investigating the co-evolution of galaxies within groups combining multi-wavelength photometric and 2D kinematical observations. Here we focus on S0s showing star formation in ring/arm-like structures. We use smooth particle hydrodynamical simulations (SPH) with chemo-photometric implementation which provide dynamical and morphological information together with the spectral energy distribution (SED) at each evolutionary stage. As test cases, we simulate the evolution of two such S0s: NGC 1533 and NGC 3626. 相似文献
569.
A. Marino L. Bianchi P. Mazzei R. Rampazzo G. Galletta 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
With the aim of investigating galaxy evolution in nearby galaxy groups, we analyzed the spectral energy distribution of 24 galaxies, members of two groups in the Leo cloud, USGC U268 and USGC U376. We estimated the ages and stellar masses of the galaxies by fitting their total apparent magnitudes from far-ultraviolet to near-infrared with population synthesis models. The comparison of the results for a subsample of galaxies with smooth particle hydrodynamic (SPH) simulations with chemo-photometric implementation, shows that in most cases the estimated stellar masses obtained with the two different approaches are in good agreement. The kinematical and dynamical analysis indicates that USGC U268 is in a pre-virial collapse phase while USGC U376 is likely in a more evolved phase towards virialization. 相似文献
570.
Vladimiro Noce Davide Loreggia Gerardo Capobianco Silvano Fineschi Alessandro Bemporad Marta Casti Steven Buckley Marco Romoli Mauro Focardi Massimiliano Belluso Cédric Thizy Aline Hermans Damien Galano Jorg Versluys 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(11):3807-3818
PROBA-3 is an ESA mission aimed at the demonstration of formation flying performance of two satellites that will form a giant coronagraph in space. The first spacecraft will host a telescope imaging the solar corona in visible light, while the second, the external occulter, will produce an artificial eclipse. This instrument is named ASPIICS (Association of Spacecraft for Polarimetric and Imaging Investigation of the Corona of the Sun). To accomplish the payload's scientific tasks, PROBA-3 will ensure sub-millimeter reciprocal positioning of its two satellites using closed-loop on-board metrology. Several metrology systems will be used and the Shadow Position Sensor (SPS) subsystem senses the penumbra around the instrument aperture and returns the 3-D displacement of the coronagraph satellite, with respect to its nominal position, by running a dedicated algorithm. In this paper, we describe how the SPS works and the choices made to accomplish the mission objectives. 相似文献