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Multifrequency microwave measurements in the intermediate zone of radiation with inverse aperture synthesis for radio image forming

机译:反向孔径合成在辐射中间区域的多频微波测量,用于无线电成像

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Experimental results of reflectivity measurements for metal sphere with diameter of 35.5 mm and cylinder with the base diameter of 38 mm and the height of 76 mm in the range of 38-52 GHz at the grid of 256 frequencies are presented. Application of reference discontinuity in the form of iris positioned in the throat of the horn allowed implementing Fourier-holography principle and obtaining complex time-domain signal of reflection from the object by Fourier transform of data in frequency domain. The magnitude of reflection directly from the sphere is proportional to its diameter. The method of inverse aperture synthesis on the basis of the method generalized spatial inverse filtration is proposed. The peculiarity of inverse aperture synthesis implementation is application this approach to the time-domain signal. For the experimental data the spatial resolution was improved in 2 times by inverse aperture synthesis. The suggested data processing method provided possibility to form radio image of the objects.
机译:给出了在256个频率的网格上,直径为35.5 mm的金属球和基径为38 mm,高度为76 mm的圆柱体在38-52 GHz范围内的反射率测量的实验结果。以位于喇叭的喉部中的虹膜形式的参考不连续性的应用允许实现傅立叶全息术原理,并且通过频域中的数据的傅立叶变换获得从物体反射的复杂时域信号。直接从球体反射的大小与它的直径成正比。在广义空间逆滤波方法的基础上,提出了逆孔径合成方法。反孔径合成实现的特殊性是将这种方法应用于时域信号。对于实验数据,通过反向孔径合成将空间分辨率提高了2倍。所提出的数据处理方法提供了形成物体的放射线图像的可能性。

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