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Surface wave multipath signals in near-field microwave imaging

机译:近场微波成像中的表面波多径信号

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摘要

Microwave imaging techniques are prone to signal corruption from unwanted multipath signals. Near-field systems are especially vulnerable because signals can scatter and reflect from structural objects within or on the boundary of the imaging zone. These issues are further exacerbated when surface waves are generated with the potential of propagating along the transmitting and receiving antenna feed lines and other low-loss paths. In this paper, we analyze the contributions of multi-path signals arising from surface wave effects. Specifically, experiments were conducted with a near-field microwave imaging array positioned at variable heights from the floor of a coupling fluid tank. Antenna arrays with different feed line lengths in the fluid were also evaluated. The results show that surface waves corrupt the received signals over the longest transmission distances across the measurement array. However, the surface wave effects can be eliminated provided the feed line lengths are sufficiently long independently of the distance of the transmitting/receiving antenna tips from the imaging tank floor. Theoretical predictions confirm the experimental observations.
机译:微波成像技术易于从不需要的多径信号中破坏信号。近场系统特别容易受到攻击,因为信号会在成像区域边界之内或之上从结构对象散射并反射。当产生具有沿发射和接收天线馈线和其他低损耗路径传播的潜力的表面波时,这些问题会进一步加剧。在本文中,我们分析了表面波效应引起的多径信号的贡献。具体而言,实验是在距耦合液箱底部可变高度的近场微波成像阵列上进行的。还评估了流体中具有不同馈线长度的天线阵列。结果表明,表面波会在整个测量阵列的最长传输距离上破坏接收到的信号。但是,只要馈线长度足够长而与发射/接收天线头距成像罐底部的距离无关,就可以消除表面波效应。理论预测证实了实验观察。

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