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Imaging Through Unknown Walls Using Different Standoff Distances

机译:使用不同的对距距离通过未知墙成像

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In through-the-wall imaging, errors in wall parameters cause targets to be imaged away from their true positions. The displacement in target locations depend on the accuracy of the estimates of the wall parameters as well as the target position relative to the antenna array. A technique using two or more standoff distances of the imaging system from the wall is proposed for application under wall parameter ambiguities. Two different imaging schemes can then be applied to correct for errors in wall characteristics. The first scheme relies on forming target displacement trajectories, each corresponding to a different standoff distance, and assuming different values of wall thickness and dielectric constant. The target position is then determined as the trajectories crossover point. In the second scheme, an image sequence is generated. Each specific image in this sequence is obtained by summing those corresponding to different standoff distances, but with the same assumed wall parameters. An imaging-focusing metric can then be adopted to determine the target position. The paper analyzes the above two schemes and provides extensive simulation examples demonstrating their effectiveness.
机译:在穿墙成像中,墙参数中的错误会导致目标远离其真实位置成像。目标位置的位移取决于壁参数估计的准确性以及相对于天线阵列的目标位置。提出了一种使用成像系统距墙的两个或更多个间隔距离的技术,以在墙参数模糊度下应用。然后可以应用两种不同的成像方案来校正墙体特征中的误差。第一种方案依赖于形成目标位移轨迹,每个轨迹对应于不同的支座距离,并假定壁厚和介电常数的值不同。然后,将目标位置确定为轨迹交叉点。在第二方案中,生成图像序列。该序列中的每个特定图像都是通过将对应于不同间距距离但具有相同假定墙参数的图像相加而获得的。然后可以采用成像聚焦度量来确定目标位置。本文分析了以上两种方案,并提供了证明其有效性的广泛仿真示例。

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