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首页> 外文期刊>Journal of Applied Geophysics >A combined strategy for landmine detection and identification using synthetic GPR responses
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A combined strategy for landmine detection and identification using synthetic GPR responses

机译:利用合成GPR响应进行地雷探测和识别的组合策略

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摘要

Synthetic Ground Penetrating Radar (GPR) target responses may be successfully used for buried landmine classification purposes. This paper demonstrates that accurately simulated one-dimensional temporal signatures can be employed as reference waveforms for efficient clutter suppression and improved target detection/recognition. The proposed methodology is a combined approach consisting of a cross-correlation based identification algorithm and an energy based detection algorithm. The former can be implemented before conducting the detection as an additional filtering step in the form of a similarity constraint between measured and synthetic scattered signals. The application of the combined method to experimental data yields a clear gain in the detection sensitivity, particularly for those mines which are most difficult to detect through scattered energy considerations alone. Moreover, an adapted Inverse Distance Weighted (IDW) averaging has been incorporated to enhance the quality of the imaging and to rise the Signal-to-Clutter ratio (SCR) of the resulting maps. This strategy can help to substantially reduce the number of false alarms and speed up the clearance labors.
机译:合成地面穿透雷达(GPR)目标响应可成功用于地下地雷分类。本文证明,可以将精确模拟的一维时间签名用作有效抑制杂波和改善目标检测/识别的参考波形。所提出的方法是由基于互相关的识别算法和基于能量的检测算法组成的组合方法。前者可以在进行检测之前作为测量和合成散射信号之间的相似性约束形式的附加滤波步骤实施。将组合方法应用于实验数据可明显提高检测灵敏度,特别是对于那些仅通过分散的能量考量最难检测的地雷。此外,还采用了自适应反距离加权(IDW)平均,以增强成像质量并提高所得地图的信噪比(SCR)。这种策略可以帮助大大减少错误警报的数量并加快清关工作。

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