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11.
提出一种适用于高星载聚束式合成孔径雷达(SAR)的改进Extended Chirp Scaling(ECS)算法。基于斜视距离等效模型,推导出改进的ECS算法,给出改进的方位Scaling因了以及算法的实现步骤。在斜视情况下改进的方法Scaling因子可以减小算法所需要的方位时间展宽,提高方位处理效率。为解决高分辨率星载聚束式SAR脉冲重复频率(PRF)过高等问题,在算法中结合了子孔径处理,并分析了采用子孔径处理的必要性及其实现方法。最后,通过计算机仿真,验证了算法的有效性。  相似文献   
12.
机载聚束式SAR天线波束指向控制分析   总被引:2,自引:0,他引:2  
建立波束控制条件下的机载聚束式SAR的天线指向及成像数学模型,证实天线波束指向被控造成回波信号的幅度调制,引起成对回波,从而影响成像质量。此外,分析波束指向控制比率与测绘带方位宽度、图像动态范围的制约关系,提出设计机载聚束式SAR天线波束指向控制比率的基本原则。最后,通过计算机仿真,验证理论分析的正确性。  相似文献   
13.
介绍了稀疏孔径成像系统的发展现状。重点介绍了系统的成像原理和种类,国外的研究进展以及系统实现的关键技术和应用前景。  相似文献   
14.
用于遥感卫星数传的新型波导阵列组合天线   总被引:2,自引:0,他引:2  
叶云裳 《宇航学报》2003,24(6):555-562
从新的设计理念出发,提出一种新型的波导十字阵列组合辐射天线替代了赋形反射面天线,用于低轨遥感卫星的数传系统。文中论述了该天线的设计思路、设计过程,并列出了天线的主要性能。最后还简述了该天线在国内卫星上的应用及我国未来低轨遥感卫星数传天线的发展趋势。该天线已在我国多个卫星上成功应用。这种波导阵列组合天线结构紧凑、尺寸小,具有与国外通用的赋形反射面天线基本类似的性能,可达到星载数传天线的预定要求,而且为星载遥感器及其他载荷留出了更大的对地安装空间。  相似文献   
15.
构造了一个求解刚性方程的二阶差分格式,它是隐式的,并采用简单迭代求解,对于稳定系统,迭代收敛性条件与步长无关,而对不稳定系统,迭代收敛性条件对步长却有所限制,利用这一限制性条件去克服解刚性方程的二阶Gear方法时出现的“危险性”。  相似文献   
16.
本文就航空发动机转速测量技术状态进行了简要分析,对适用于超轻型飞机的具有原理、结构简单,造价低等优点的“脉冲式转速表”的设计、校验等进行了详细的论述,并对该原理的推广应用进行了分析讨论。  相似文献   
17.
We are in the process of surveying the linear polarization in luminous, early-type stars. We here report on new observations of the B [e] stars S 18 and R 50, and of the Luminous Blue Variables HR Car, R 143, and HD 160529. Together with previously published data, these observations provide clear evidence for the presence of intrinsic polarization in 1 B[e] star (HD 34664) and in 5 LBVs ( Car, P Cyg, R 127, AG Car, and HR Car). The data indicate that anisotropic stellar winds are a common occurrence among massive stars in these particular evolutionary stages. For such stars, mass-loss rates estimated using the assumption of a spherical, homogeneous and stationary outflow may be in error.  相似文献   
18.
共面变速拦截对策的一个统一的近似反馈解   总被引:1,自引:0,他引:1  
刘长有  张嗣瀛 《航空学报》1989,10(9):427-433
 本文运用微分对策理论研究了战术导弹与目标飞机之间的共面变速拦截问题,采用强迫奇异摄动方法求得了统一的近似反馈制导控制规律。选用实际空气动力数据的算例表明这个次最优制导控制规律是有效的。  相似文献   
19.
The study is a first attempt to prepare bulk NiTi/NiTi shape memory alloy (SMA) laminates with a macroscopic heterogeneous composition by explosive welding and investigate their microstructures and martensitic transformation behaviors. After explosive weld- ing, a perfect interfacial bonding between the two components and a reversible martensitic transformation are realized in the tandem. Results show achievement of a fine granular structure and the maximum value of microhardness near the welding interface because of the excessive cold plastic deformation and the high impact velocity during the explosive welding. Meanwhile, the effects of aging on the transformation of the welded tandem are investigated by differential scanning calorimeter (DSC) and subject to discussion. The trans- formation temperatures of NiTi/NiTi SMAs increase with the rise of the aging temperature. The experimental results indicate the shape memory properties of NiTi/NiTi SMA fabricated by explosive welding can be improved by optimizing the aging technology.  相似文献   
20.
The magnetospheric imaging instrument (MIMI) is a neutral and charged particle detection system on the Cassini orbiter spacecraft designed to perform both global imaging and in-situ measurements to study the overall configuration and dynamics of Saturn’s magnetosphere and its interactions with the solar wind, Saturn’s atmosphere, Titan, and the icy satellites. The processes responsible for Saturn’s aurora will be investigated; a search will be performed for substorms at Saturn; and the origins of magnetospheric hot plasmas will be determined. Further, the Jovian magnetosphere and Io torus will be imaged during Jupiter flyby. The investigative approach is twofold. (1) Perform remote sensing of the magnetospheric energetic (E > 7 keV) ion plasmas by detecting and imaging charge-exchange neutrals, created when magnetospheric ions capture electrons from ambient neutral gas. Such escaping neutrals were detected by the Voyager l spacecraft outside Saturn’s magnetosphere and can be used like photons to form images of the emitting regions, as has been demonstrated at Earth. (2) Determine through in-situ measurements the 3-D particle distribution functions including ion composition and charge states (E > 3 keV/e). The combination of in-situ measurements with global images, together with analysis and interpretation techniques that include direct “forward modeling’’ and deconvolution by tomography, is expected to yield a global assessment of magnetospheric structure and dynamics, including (a) magnetospheric ring currents and hot plasma populations, (b) magnetic field distortions, (c) electric field configuration, (d) particle injection boundaries associated with magnetic storms and substorms, and (e) the connection of the magnetosphere to ionospheric altitudes. Titan and its torus will stand out in energetic neutral images throughout the Cassini orbit, and thus serve as a continuous remote probe of ion flux variations near 20R S (e.g., magnetopause crossings and substorm plasma injections). The Titan exosphere and its cometary interaction with magnetospheric plasmas will be imaged in detail on each flyby. The three principal sensors of MIMI consists of an ion and neutral camera (INCA), a charge–energy–mass-spectrometer (CHEMS) essentially identical to our instrument flown on the ISTP/Geotail spacecraft, and the low energy magnetospheric measurements system (LEMMS), an advanced design of one of our sensors flown on the Galileo spacecraft. The INCA head is a large geometry factor (G ∼ 2.4 cm2 sr) foil time-of-flight (TOF) camera that separately registers the incident direction of either energetic neutral atoms (ENA) or ion species (≥5 full width half maximum) over the range 7 keV/nuc < E < 3 MeV/nuc. CHEMS uses electrostatic deflection, TOF, and energy measurement to determine ion energy, charge state, mass, and 3-D anisotropy in the range 3 ≤ E ≤ 220 keV/e with good (∼0.05 cm2 sr) sensitivity. LEMMS is a two-ended telescope that measures ions in the range 0.03 ≤ E ≤ 18 MeV and electrons 0.015 ≤ E≤ 0.884 MeV in the forward direction (G ∼ 0.02 cm2 sr), while high energy electrons (0.1–5 MeV) and ions (1.6–160 MeV) are measured from the back direction (G ∼ 0.4 cm2 sr). The latter are relevant to inner magnetosphere studies of diffusion processes and satellite microsignatures as well as cosmic ray albedo neutron decay (CRAND). Our analyses of Voyager energetic neutral particle and Lyman-α measurements show that INCA will provide statistically significant global magnetospheric images from a distance of ∼60 R S every 2–3 h (every ∼10 min from ∼20 R S). Moreover, during Titan flybys, INCA will provide images of the interaction of the Titan exosphere with the Saturn magnetosphere every 1.5 min. Time resolution for charged particle measurements can be < 0.1 s, which is more than adequate for microsignature studies. Data obtained during Venus-2 flyby and Earth swingby in June and August 1999, respectively, and Jupiter flyby in December 2000 to January 2001 show that the instrument is performing well, has made important and heretofore unobtainable measurements in interplanetary space at Jupiter, and will likely obtain high-quality data throughout each orbit of the Cassini mission at Saturn. Sample data from each of the three sensors during the August 18 Earth swingby are shown, including the first ENA image of part of the ring current obtained by an instrument specifically designed for this purpose. Similarily, measurements in cis-Jovian space include the first detailed charge state determination of Iogenic ions and several ENA images of that planet’s magnetosphere.This revised version was published online in July 2005 with a corrected cover date.  相似文献   
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