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Transmitter-receiver-transmitter-configured ground-penetrating radars over randomly heterogeneous ground models

机译:随机异构地面模型上配置了发射机-接收机-发射机的探地雷达

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摘要

Ground-penetrating radar (GPR) problems are simulated using the finite-difference time-domain (FDTD) method. The GPR model is configured with arbitrarily polarized three antennas, two of which are transmitting antennas fed 180° out of phase. The receiver is placed in the middle of two transmitters, where it receives no direct coupling from the transmitting antennas. The ground is modeled as a dielectric, lossy, and heterogeneous medium. The performances of the transmitter-receiver-transmitter-configured GPRs above the heterogeneous ground models are investigated. The computational domain is terminated by perfectly matched layer (PML) absorbing boundaries. The PML is adapted to match both air and ground regions of the computation space.
机译:使用有限差分时域(FDTD)方法模拟了探地雷达(GPR)问题。 GPR模型配置有任意极化的三个天线,其中两个是相位相差180°的发射天线。接收器放置在两个发射器的中间,在接收器中没有接收到来自发射天线的直接耦合。地面被建模为介电,有损和异构介质。研究了异类地面模型之上的发射机-接收机-发射机配置的GPR的性能。计算域由吸收边界的完美匹配层(PML)终止。 PML适用于匹配计算空间的空中和地面区域。

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