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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A Phaseless Inverse Source Method (PISM) Based on Near-Field Scanning for Radiation Diagnosis and Prediction of PCBs
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A Phaseless Inverse Source Method (PISM) Based on Near-Field Scanning for Radiation Diagnosis and Prediction of PCBs

机译:一种基于近场扫描的释放逆源法(PISM),用于辐射诊断和PCB的预测

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摘要

In this article, we present an efficient phaseless inverse source method (PISM) to reconstruct equivalent sources on a printed circuit board (PCB) using magnitude-only single-plane near-field scanning. The equivalent source distribution reconstructed by the conventional source reconstruction method requires accurate near-field magnitude and phase information, but phase measurement is difficult in many cases due to inaccuracy and complexity. In order to describe the inverse problem between phaseless fields and radiation sources, a nonlinear cost function based on surface integral equations is established. The cost function of the PISM is rapidly minimized by an iterative optimization and regularization technique for nonlinear ill-posed systems. The proposed method gives the characterization of PCBs both for diagnostic tasks of radiation sources and the near-field radiation behavior prediction when the phase information is missing. It also shows excellent robustness in tackling with various near-field data and noises. Both numerical examples and laboratory experiments are given to verify the effectiveness of the proposed method.
机译:在本文中,我们提出了一种有效的释放逆源方法(Pism),以使用仅限幅度单面近场扫描来重建印刷电路板(PCB)上的等效源。由传统源重建方法重建的等效源分布需要精确的近场幅度和相位信息,但由于不准确和复杂性,许多情况下难以相位测量。为了描述挖掘场和辐射源之间的逆问题,建立了基于曲面整体方程的非线性成本函数。通过用于非线性均未造成系统的迭代优化和正则化技术,术的成本函数迅速最小化。所提出的方法给出了在丢失相位信息时辐射源的诊断任务和近场辐射行为预测的PCB的表征。它还在处理各种近场数据和噪音时,还展示了出色的鲁棒性。给出了数值例子和实验室实验,以验证所提出的方法的有效性。

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