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Design of an improved dipole antenna for detecting enclosure structure defects by crosshole GPR

机译:改进的偶极子天线设计,用于通过交叉孔GPR检测外壳结构缺陷

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In underground engineering, the enclosure structure is the most critical part to guarantee the safety of construction. However, defects such as voids or cracks might appear in the structure, which will lead to accidents of foundation pit. In this paper, an improved dipole antenna is designed for detecting enclosure structure defects by a stepped frequency crosshole Ground Penetrating Radar (GPR). In order to obtain more desirable performance, the antenna parameters including the half-cone angle θ, the feeding gap g, the cylinder radius r and the cylinder length l are designed and optimized by the FEM method. The optimized antenna has a center frequency of 0.52GHz and can work well in the frequency range from 0.45GHz to 1.55GHz. Moreover, the antenna is fabricated and tested in a physical model. The result shows that the designed antenna has good performance and can serve for enclosure structure defects detection.
机译:在地下工程中,围护结构是保证施工安全的最关键部分。但是,结构中可能会出现空隙或裂缝等缺陷,从而导致基坑事故。在本文中,设计了一种改进的偶极天线,用于通过阶梯式频率跨孔地面穿透雷达(GPR)检测外壳结构缺陷。为了获得更理想的性能,通过FEM方法设计并优化了包括半锥角θ,馈电间隙g,圆柱半径r和圆柱长度l在内的天线参数。经过优化的天线的中心频率为0.52GHz,并且可以在0.45GHz至1.55GHz的频率范围内很好地工作。而且,天线是在物理模型中制造和测试的。结果表明,所设计的天线具有良好的性能,可用于外壳结构缺陷的检测。

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