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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Spiky sea clutter at high range resolutions and very low grazingangles
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Spiky sea clutter at high range resolutions and very low grazingangles

机译:刺眼的海杂波,具有高分辨率和极低的掠射角

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X-band (9.5-10.0 GHz) backscatter at near grazing incidence (0.2 deg) from the sea off the coast of Kauai, Hawaii, was measured with a radar characterized by a high spatial resolution in range (0.3 m) and a high temporal resolution (2000 Hz pulse repetition frequency (PRF)). Extensive amounts (over 20 min per measurement) of vertically and horizontally polarized sea clutter data were taken with upwind (UP) and crosswind (CR) transmit geometries during the collection campaign. Specific but representative examples of the clutter were statistically and phenomenologically analyzed over time scales varying from long (200 s), to intermediate (5 s), to short (50 ms), and over range swaths varying from full (160 m), to partial (30 m), to a single range cell (0.3 m). All analyses and results presented here are noncoherent, involving only the clutter amplitudes. Each type of clutter exhibited the characteristic spiky behavior which has come to be expected from microwave sea backscatter observed at low grazing angles and high range resolutions, while showing, between themselves, marked transmit geometry and polarization dependent contrasts, with the horizontally polarized clutter, measured with an UP transmit geometry, being especially notable for its frequently occurring, significant high frequency spectral content. Within the same clutter type, differences were observed in the probability distributions of radar cross sections (RCS) of spatially and temporally extended spiking events
机译:用雷达以在距离(0.3 m)内具有高空间分辨率和高时间分辨率为特征的雷达测量了从夏威夷考艾岛海岸附近海域接近掠食入射(0.2度)的X波段(9.5-10.0 GHz)反向散射分辨率(2000 Hz脉冲重复频率(PRF))。在收集活动期间,利用上风(UP)和侧风(CR)的传输几何形状获取了大量垂直和水平极化的海杂波数据(每次测量超过20分钟)。从长(200 s),中(5 s),短(50 ms)和范围从满(160 m)到局部(30 m),到单个测距单元(0.3 m)。此处介绍的所有分析和结果都是非相干的,仅涉及杂波幅度。每种类型的杂波都表现出特征性的尖峰行为,这是从低掠角和高范围分辨率观察到的微波海面反向散射所期望的,同时在它们之间显示了明显的发射几何形状和偏振相关的对比度,并测量了水平偏振杂波具有UP发射几何结构的传感器,尤其以其频繁出现的显着高频频谱含量而著称。在相同的杂波类型中,观察到了空间和时间扩展尖峰事件的雷达横截面(RCS)的概率分布差异

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