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Polarimetric Antenna for Ground Penetrating Radar based on the Resistive-Vee Dipole

机译:基于电阻V形偶极子的探地雷达极化天线

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A broadband antenna system has been developed to use polarization diversity for ground penetrating radar (GPR) applications. The antenna system uses four, crossed, resistive-vee dipole (RVD) antennas operating bistaticly to measure the transmission and reception of multiple polarizations. The RVD was selected because it has low self clutter, low radar cross section and wideband performance. The RVD is linearly polarized, but other polarizations can be synthesized through the use of two orthogonal RVDs to transmit or receive orthogonal field components. The antenna system is able to distinguish rotationally symmetric and linear targets with its ability to transmit right-hand circularly polarized (RHCP) fields and receive both left-hand circularly polarized (LHCP) and RHCP scattered fields. A target's type can be identified by comparing the relative amplitudes of the received LHCP fields and RHCP fields. For example, the polarimetric antenna will be able to identify linear targets such as wires or pipes because linear targets scatter LHCP and RHCP fields in equal amounts. The configuration of the RVDs was optimized through simulation to achieve good circular polarization at close range and low coupling between the RVDs. Further simulations were performed which demonstrate that the polarimetric antenna provides sufficient information to identify linear targets from nonlinear ones, even at different target orientations. The polarimetric antenna was constructed and has been shown to also correctly detect and identify linear targets. Additional experiments revealed that the polarimetric antenna is effective for ground penetrating radar applications.
机译:已经开发出一种宽带天线系统,以将极化分集用于地面穿透雷达(GPR)应用。该天线系统使用四根交叉的电阻式双极天线(RVD),这些天线以双基地方式工作,以测量多极化的发射和接收。选择RVD是因为它具有低自杂波,低雷达截面和宽带性能。 RVD是线性极化的,但是可以通过使用两个正交的RVD发送或接收正交的场分量来合成其他极化。天线系统能够发射右旋圆极化(RHCP)场并接收左旋圆极化(LHCP)和RHCP散射场,从而能够区分旋转对称目标和线性目标。可以通过比较接收到的LHCP字段和RHCP字段的相对幅度来确定目标的类型。例如,极化天线将能够识别线性目标,例如电线或管道,因为线性目标会以相同的数量散射LHCP和RHCP场。 RVD的配置通过仿真进行了优化,以实现近距离范围内的良好圆极化和RVD之间的低耦合。进行了进一步的仿真,这些仿真表明,即使在不同的目标方向上,极化天线也可以提供足够的信息来从非线性目标中识别出线性目标。构造了极化天线,事实证明,该天线还可以正确检测和识别线性目标。额外的实验表明,极化天线对于探地雷达应用是有效的。

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