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A New Propagator Matrix Algorithm to Compute Electromagnetic Fields in Multilayered Formations With Full Anisotropy

算法 传播子 高斯求积 数学分析 数学 积分方程 尼氏法 数学物理
作者
Lei Wang,Ping Qiao,Weina Zhao,Fuhua Cao,Yiren Fan
出处
期刊:IEEE Transactions on Geoscience and Remote Sensing [Institute of Electrical and Electronics Engineers]
卷期号:61: 1-11 被引量:1
标识
DOI:10.1109/tgrs.2023.3302513
摘要

A new and succinct semi-analytical algorithm has been developed to compute the electromagnetic (EM) fields radiated by a magnetic or electrical dipole source in planar-stratified formations with full anisotropy. The new algorithm is based on a modified propagator matrix approach to elaborate the propagations of spectral EM waves. First, the original boundary condition equation is modified so that each linear equation only consists of three unknown amplitude vectors. These amplitudes are then connected by artificially assembling all boundary conditions, giving rise to a global linear system with a tridiagonal matrix. Using the diagonal matrix algorithm, the spectral EM fields are readily obtained via a set of 2×2 matrix operations. A hybrid integral approach is then developed in order to accurately convert the spectral EM fields into the spatial domain. Taking advantages of the Gauss-Legendre quadrature approach in conjunction with the sine/cosine digital filtering method, the high oscillating problem of the inverse Fourier transform has been addressed. Considering the attenuation changes of the EM waves under different wavenumbers, a self-adaptive model reduction scheme is also proposed to effectively cut off the unnecessary and remote formations. This model simplification can significantly speed up the computation in favorable conditions. Numerical experiments show that the proposed semi-analytical method is efficient, robust and stable, and it has provided a fast simulator for the electromagnetic radiation problems in the presence of multilayered formations with full anisotropy.
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