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Higher Order Computational Electromagnetics, Uncertainty Quantification, and Meshing Techniques with Applications in Wireless Communication, Medicine, and Meteorology

机译:高阶计算电磁学,不确定度量化和网格划分技术及其在无线通信,医学和气象学中的应用

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摘要

We present some advances in several major components of computational electromagnetics (CEM), including (1) higher order method of moments, finite element method, ray-tracing, and hybrid techniques, (2) uncertainty quantification techniques for CEM modeling of RF and microwave devices and systems featuring a posteriori error estimation, sensitivity analysis, and intelligent model refinement based on adjoint methods, and (3) automatic surface meshing in CEM by the discrete surface Ricci flow method enabling generation of high quality meshes and adaptive iterative mesh refinement. We also show how these methodologies and techniques can be effectively applied to solving general real-world problems with impacts on wireless communication, medicine, and meteorology. The applications include (A) smart underground mining with an integrated wireless cyber-physical framework using CEM modeling and measurements of wireless propagation in underground mines, (B) design of RF coils for next-generation high and ultra-high field magnetic resonance imaging (MRI) scanners based on CEM and MRI experiments, and (C) accurate characterization of winter precipitation using multi-angle snowflake camera, visual hull image processing, advanced scattering methods, and polarimetric radar.
机译:我们介绍了计算电磁学(CEM)的几个主要组成部分中的一些进展,包括(1)高阶矩方法,有限元方法,射线跟踪和混合技术,(2)用于RF和微波CEM建模的不确定性量化技术设备和系统具有后验误差估计,灵敏度分析和基于伴随方法的智能模型细化功能,以及(3)通过离散表面Ricci流方法在CEM中自动进行表面网格划分,从而能够生成高质量的网格并进行自适应迭代网格细化。我们还将展示如何将这些方法和技术有效地用于解决对无线通信,医学和气象学产生影响的一般现实问题。这些应用包括(A)具有CEM建模和地下矿井无线传播测量功能的集成无线网络物理框架的智能地下采矿;(B)用于下一代高场和超高场磁共振成像的RF线圈设计( MRI)基于CEM和MRI实验的扫描仪,以及(C)使用多角度雪花照相机,视觉船体图像处理,先进的散射方法和极化雷达对冬季降水进行准确表征。

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