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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Some Remarks on Time-Reversal MUSIC for Two-Dimensional Thin PEC Scatterers
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Some Remarks on Time-Reversal MUSIC for Two-Dimensional Thin PEC Scatterers

机译:关于二维薄PEC散射体的时间反转MUSIC的一些说明

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摘要

Time-reversal MUSIC is a super-resolving imaging method that allows localizing point-like scatterers with a resolution much smaller than the diffraction limits. In this letter, we check this statement for a populated scattering scene for the case of 2-D cylindrical perfect electric conducting objects. It is shown that when the data are corrupted even by a small amount of noise, there is an intrinsic limit on the number of scatterers that can be successfully detected. This number turns out to be linked with the so-called number of degrees of freedom corresponding to the spatial region where the targets are located. Moreover, it is shown that the transverse electric polarization is more sensitive to the noise as, given the size of the spatial region occupied by the scatterers, the maximum number of scatterers that can be detected is three times lower than that detectable by the transverse magnetic illumination.
机译:时间反转MUSIC是一种超分辨成像方法,它可以定位分辨率远小于衍射极限的点状散射体。在这封信中,我们检查了该语句中二维圆柱完美导电物体情况下的填充散射场景。结果表明,即使数据被少量噪声破坏,对可以成功检测到的散射体数量也存在固有的限制。事实证明,该数字与对应于目标所在空间区域的所谓自由度数有关。此外,由于在散射体占据的空间区域的大小下,可检测到的散射体的最大数量比横向磁场可检测到的散射体低三倍,这表明横向极化对噪声更敏感。照明。

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