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A Phaseless Microwave Imaging Approach Based on a Lebesgue-Space Inversion Algorithm

机译:一种基于LEBESGUE空间反演算法的拍摄微波成像方法

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摘要

A phaseless tomographic method for microwave imaging is presented in this article. The developed algorithm aims at retrieving the distributions of the dielectric properties of a predefined region under test, starting from amplitude-only electric field measurements. The use of this kind of input data allows cheaper measurement setups that do not require a coherent detection or complex phase synchronization approaches. Inside the imaging procedure, the nonlinear relationship between the amplitude-only measured data and the dielectric properties of the targets is inverted by using an iterative Newton scheme. The core of this approach is represented by a Lebesgue-space regularization algorithm, which is adopted for computing the solution update at each linearization step. The capabilities of the proposed imaging method are evaluated in numerically simulated scenarios, as well as by using experimental field measurements.
机译:本文提出了一种用于微波成像的挖掘断层方法。开发算法旨在检索在仅幅度电场测量的幅度电场测量的测试中的预定区域的介电特性的分布。这种输入数据的使用允许更便宜的测量设置,不需要相干检测或复杂的相位同步方法。在成像过程中,通过使用迭代牛顿方案反转仅幅度测量数据与目标的电介质特性之间的非线性关系。该方法的核心由Lebesgue空间正则化算法表示,该算法用于计算每个线性化步骤的解决方案更新。在数值模拟场景中评估所提出的成像方法的能力,以及使用实验场测量。

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