利用探地雷达a扫描数据进行穿墙目标探测:不同墙体结构对探测性能的影响

M. Dogan, G. Turhan‐Sayan
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引用次数: 2

摘要

探地雷达(GPR)是一种基于超宽带雷达技术的电磁传感器,也可用于穿墙(TTW)目标识别。在各种关键应用中,搜索隐藏在墙后的指定目标,例如静止或移动的人体或某些类型的武器;在地震后的救援任务或军事行动等。在这类反问题中,墙的类型与隐藏目标的性质和位置同样重要。在TTW目标探测问题中,解释基本的a扫描GPR信号是一项具有挑战性的任务,特别是当墙体由含有充气孔的砖块构成时。本文定义了一种简化的TTW目标检测场景,使用导体或塑料材料制成的圆柱形目标。目标被放置在砖墙后面不同距离的地方,砖墙由均匀的实心砖或不均匀的砖制成,其中包含周期性定位的充满空气的隔间。利用基于时域有限差分(FDTD)技术的数值计算工具对GPR信号进行了目标探测场景的模拟。然后,对模拟信号进行时域分析,进行预处理和目标检测。利用基于能量的信号特征消除墙体前面的强早时反射,增强被目标散射的信号分量,提高检测性能。
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Through-the-wall target detection using gpr A-Scan data: Effects of different wall structures on detection performance
Ground penetrating radar (GPR) is an electromagnetic sensor based on the ultra-wideband radar technology that can also be used for through-the-wall (TTW) target recognition. Search for the presence of designated targets hidden behind the walls, such as stationary or moving human bodies or certain types of weapons, is addressed in various critical applications; in rescue missions after earthquakes or in military operations, etc. In such inverse problems, type of the wall is as important as the properties and location of the hidden target. Interpretation of the basic A-Scan GPR signals is a challenging task in the TTW target detection problem especially when the wall is constructed by bricks containing air-filled holes. In this paper, a simplified TTW target detection scenario is defined using cylindrical targets made of conductor or plastic materials. The target is placed behind the brick wall at different distances where the wall is made of either homogeneous solid bricks or inhomogeneous bricks that contain periodically located air-filled compartments. GPR signals are simulated for such target detection scenarios using a numerical computation tool that is based on the finite difference time domain (FDTD) technique. Then, simulated signals are analyzed in time domain for preprocessing and target detection. Energy based signal features are used to eliminate strong early-time reflections from the front face of the wall to enhance the signal components scattered by the target for better detection performance.
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