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Scattering characteristics of metal and plastic mines at 16 GHz

机译:16 GHz的金属和塑料矿的散射特性

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Single-polarity, synthetic aperture radar (SAR) data collected in spotlight mode is examined as part of an effort to identify surface land mines in high-frequency radar imagery. A measurements program was recently conducted using a Ku-band (16 GHz) radar. In this experiment, metal and plastic mines were placed on smooth dirt lanes and in tall and short grass areas adjacent to these lanes. The collected data set consisted of magnitude-only data for several different passes over a common target area that included various reference reflectors as well as the landmines. The metal and plastic mines on the dirt lanes were clearly visible in the processed radar imager, while the mines in the grass areas were not observable - even after applying multi-look averaging. (Multi-look averaging exploits the circular symmetry of the mines to enhance the contrast between the mines and the background clutter). To investigate these effects, we used rigorous moment method-based electromagnetic solvers to compute the backscatter from the metal and plastic mines in a variety of backgrounds. The model results were shown to be consistent with the measurement data for metal mines on the dirt lanes. The plastic mines were not consistent with the data, however. We believe that the difference is due to uncertainty in the mine dielectric constant. The model results also showed that a significant focusing effect (or "glory wave" could be seen in the plastic mines at low depression angles. Finally, the model demonstrated the highly absorptive nature of the grass, as shown by the significantly reduced radar cross section of mines placed in a three-layer grass model.
机译:在聚光灯模式中收集的单极性,合成孔径雷达(SAR)数据是努力识别高频雷达图像中表面陆地矿的一部分。最近使用KU波段(16 GHz)雷达进行测量程序。在本实验中,将金属和塑料矿井置于光滑的污垢车道上,并且在与这些车道相邻的高草区域上。收集的数据集由仅在包括各种参考反射器以及地雷的公共目标区域上的几个不同的幅度数据组成。在加工的雷达成像仪中清楚地看到污垢通道上的金属和塑料矿,而草地区的矿区则不观察到 - 即使在施加多外观平均而下也是如此。 (多外观平均利用地雷的圆对称以增强矿山和背景杂波之间的对比度)。为了调查这些效果,我们使用了严格的力矩方法的电磁溶剂来计算来自各种背景中的金属和塑料矿山的后散射。模型结果显示与污垢车道上的金属矿的测量数据一致。然而,塑料矿山与数据不一致。我们认为差异是由于矿介质常数的不确定性。模型结果还表明,在低凹陷角度的塑料矿区可以看到显着的聚焦效果(或“荣耀波”。最后,该模型表明了草的高吸收性,如显着减少的雷达横截面所示矿井置于三层草模型。

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