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首页> 外文期刊>Magnetics, IEEE Transactions on >A Hybrid Lattice-Adaptable FDTD/PSTD Method for the Design of Composite Bi-Isotropic Absorbers in EMC Anechoic Chambers
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A Hybrid Lattice-Adaptable FDTD/PSTD Method for the Design of Composite Bi-Isotropic Absorbers in EMC Anechoic Chambers

机译:混合格适应FDTD / PSTD方法在EMC无声室中设计复合双全向吸收体

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摘要

A 3-D hybrid methodology for the proficient design of optimized microwave absorbers, based on bi-isotropic media, in anechoic facilities is introduced in this paper. Merging an accuracy-adjustable finite-difference time-domain and a pseudospectral time-domain algorithm, the novel technique develops a multimodal projection for sharp field variations and a Fourier–Chebyshev interpolation for the structure''s periodic details. For the frequently encountered curvatures and discontinuities, a grid-adaptable process offers the appropriate modeling guidelines and imposes the correct interface conditions. Such benefits are verified via the characterization of different EMC chambers lined with the proposed absorbers, while diverse bi-isotropic setups of very low reflectivity are thoroughly investigated.
机译:本文介绍了一种3-D混合方法,用于在消声设备中基于双各向同性介质来优化设计优化的微波吸收器。结合了精度可调的时域有限差分法和伪谱时域算法,该新技术开发了一种用于锐变场变化的多峰投影以及用于结构周期性细节的傅里叶-切比雪夫插值。对于经常遇到的曲率和不连续性,适用于网格的过程可提供适当的建模准则并施加正确的界面条件。通过对衬有建议的吸收器的不同EMC腔室进行表征,可以验证这些好处,同时还对反射率极低的各种双各向同性设置进行了深入研究。

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