计算复杂截面波导本征模谱的数值模型

S. Prikolotin, A. Kirilenko
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引用次数: 1

摘要

通常在解决计算电磁学问题时,可以采用两种方法:开发专用(解决特定问题的最优方法)或全局计算算法(解决广泛问题的通用方法)。第一种方法的优点是算法的速度和准确性,而第二种方法的优点自然来自它的名字。最近观察到使用所谓的混合方法的趋势,结合了两个方向的优点。混合方法的基础在于开发这样的专用方法,使其能够快速准确地计算出具有某些共同属性集特征的整个单元类。这些专门的方法包括考虑边缘附近电磁场特性的模式匹配技术。本文将该技术推广到具有坐标边界的任意波导对象。
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Numerical model for calculating eigen-mode spectrum of complicated cross-section waveguides
Usually in solving problems of computational electromagnetics the two ways can be utilized: developing of dedicated (the most optimal method to solve a specific problem) or global computational algorithms (one universal method to solve the wide class of problems). The advantages of the first way are speed and accuracy of algorithm, while the virtue of second way naturally follows from its name. Recently observed the tendency of using so called hybrid approach that combines advantages of the both directions. The ground of hybrid approach consists in developing such special-purpose methods which make it possible to calculate quickly and accurately the whole class of units which are characterized by the set of some common attributes. These specialized methods include the mode-matching technique taking into account the peculiarities of the electromagnetic field near the edges. Generalization of this technique to arbitrary waveguide objects with coordinate boundaries is presented in this paper.
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Numerical model for calculating eigen-mode spectrum of complicated cross-section waveguides Energy of activation of saccharose in solutions Robust DFT-based signal processing in Micro-Doppler radars Coupled disk, half-disk and spiral resonators with whispering gallery-like modes Azimuth angle errors as affected Fresnel diffraction on the large obstacles
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