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Experimentally Achieving Borehole Radar Antenna Directivity in the Time Domain in the Presence of Strong Mutual Coupling (Best of SAGA)

机译:实验在强大的相互耦合(最佳SAGA)存在时在时域中实现钻孔雷达天线方向性

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It is difficult to achieve significant directivity in the radial direction of a borehole radar antenna, because the spacing of antenna elements is typically constrained by the borehole diameter to be considerably less than a wavelength. Previously published borehole radar antennas have achieved directivity by post processing data received in the frequency domain, or by constructing an aperture antenna, where borehole dimensions allowed this. In this paper, a time-domain technique is investigated for determining the radial direction of reflectors detected in borehole radar images. The antenna itself is an array of four elements and the delay in arrival of the signal between elements is used to determine its direction. We show here that a relativity slow sampling rate is adequate to resolve the small time intervals between signals received on different antenna elements. Mutual coupling between the antenna elements does affect the relative timing, but does not prevent the extraction of usable directional data. Experimental data from a test tank confirms that estimates of reflector direction can be made within about +15°/-5° of the true direction for antenna elements 20mm apart in water, excited with a pulse that has a centre frequency of 250 MHz.^
机译:难以在钻孔雷达天线的径向方向上实现显着的方向性,因为天线元件的间隔通常由钻孔直径约束,以相当小于波长。以前公开的钻孔雷达天线通过在频域中接收的处理数据或通过构造孔天线而允许的孔尺寸来实现方向性。在本文中,研究了时域技术以确定在钻孔雷达图像中检测到的反射器的径向。天线本身是四个元素的阵列,并且元件之间的信号到达的延迟用于确定其方向。我们在这里展示了相对论的缓慢采样率足以解决在不同天线元件上接收的信号之间的小时间间隔。天线元件之间的相互耦合确实影响相对定时,但不阻止可用定向数据的提取。来自测试罐的实验数据确认反射器方向的估计可以在水中的天线元件20mm的真实方向的真正方向之内,激发具有250 MHz的中心频率的脉冲。^

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