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A Composite Cell-Multiresolution Time-Domain Technique for the Design of Antenna Systems Including Electromagnetic Band Gap and Via-Array Structures

机译:包含电磁带隙和通孔阵列结构的天线系统设计的复合单元多分辨率时域技术

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In this paper, the Haar-wavelet multiresolution timedomain (MRTD) scheme is modified in a way that enables the modeling of arbitrarily positioned metals within a cell, leading to the development of composite cells that are useful for the simulation of highly detailed structures. The technique is applied through the use of wavelet reconstruction and deconstruction matrices to explicitly set field values at perfect electrical conductor interfaces. Using this scheme, MRTD can be used to drastically reduce the number of cells needed to simulate complex antenna geometries including radio-frequency microelectromechanical systems, electronic bandgaps, and via arrays, while taking full advantage of the technique's inherent time- and space-adaptive gridding.
机译:在本文中,对Haar小波多分辨率时域(MRTD)方案进行了修改,可以对单元中任意放置的金属进行建模,从而导致了复合单元的发展,该复合单元可用于高度详细的结构的仿真。通过使用小波重构和解构矩阵来应用该技术,以在理想的电导体界面上显式设置场值。使用该方案,可以使用MRTD来大大减少模拟复杂天线几何结构(包括射频微机电系统,电子带隙和过孔阵列)所需的单元数量,同时充分利用该技术固有的时空自适应网格技术。

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