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Numerical and Experimental Comparison Among a New Hybrid FT-Music Technique and Existing Algorithms for Through-the-Wall Radar Imaging

机译:一种新的混合式FT-Music技术与墙壁雷达成像的现有算法的数值和实验比较

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摘要

A fast low-cost through-the-wall radar imaging (TWRI) system, based on a vector network analyzer (VNA), a couple of switches and an array of Vivaldi antennas, has been designed, realized, and tested. To solve the TWRI inversion problem, an original theoretical modeling for a class of TWRI techniques whose basic functions are the cross-range Fourier transform (FT) of the scattered field and its covariance operator has been proposed. Using these functions, four conventional algorithms, namely the delay and sum (DAS), the FT, the multiple signal classification (MUSIC), the hybrid DAS-MUSIC and a new algorithm, the hybrid FT-MUSIC, have been derived. All these techniques have been implemented and their accuracy and field of view have been tested on canonical scatterers. Then, the algorithms have been applied to measured data collected in different scenarios constituted by a metallic bar or a human subject in the absence and in the presence of a wall between the antenna and the considered targets. Using the proposed TWRI system, it has been possible to detect a subject located up to 5-m away from the radar antenna array through a tuff wall. The proposed FT-MUSIC algorithm has evidenced performances similar to those of the DAS-MUSIC but with significantly lower execution times. Finally, FT-MUSIC performances in terms of field of view and immunity to disturbances are better compared to those of the MUSIC algorithm.
机译:基于向量网络分析仪(VNA),几个开关和VivalDi天线阵列的快速低成本的壁雷达成像(TWRI)系统已经设计,实现,实现并测试。为了解决TWRI反演问题,已经提出了一类TWRI技术的原始理论建模,其基本功能是散射场的跨范围傅立叶变换(FT)及其协方差运算符。使用这些功能,四种传统算法,即延迟和总和(DAS),FT,多个信号分类(音乐),混合DAS-Music和新算法,混合FT-Music的算法已经得出。已经实施了所有这些技术,并且已经在规范散射体上测试了它们的准确性和视野。然后,已经应用了算法以在不存在的情况下,在不存在的情况下和在天线和所考虑的靶之间的壁上构成的不同场景中收集的测量数据。使用所提出的TWRI系统,可以通过牙沟壁从雷达天线阵列远离距5-m的受试者。所提出的FT-Music算法已经证明了与DAS-Music那些类似的表演,但执行时间明显降低。最后,与音乐算法的那些相比,在视野和扰动方面的FT-Music表演比音乐算法更好。

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