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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Scattering from planar structures containing small features using the adaptive integral method (AIM)
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Scattering from planar structures containing small features using the adaptive integral method (AIM)

机译:使用自适应积分方法(AIM)从包含小特征的平面结构中散射

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Fast integral equation algorithms such as the adaptive integral method (AIM) have been demonstrated to reduce memory and execution time associated with moment-method solutions for arbitrarily shaped three-dimensional (3-D) geometries. In this paper, we examine the efficiency of AIM in modeling planar structures that contain small and intricate details as is the case with spirals and slot antennas. Such geometries require high tessellation due to the inclusion of very small features resulting in a large number of unknowns. AIM with its capability to translate the original grid to an equivalent sparser uniform grid is uniquely suited for the analysis of such geometries. In the latter part of the paper, we demonstrate the application of AIM in connection with a finite-element boundary-integral formulation for cavity-backed antennas.
机译:快速积分方程算法,例如自适应积分方法(AIM),已被证明可以减少与任意形状的三维(3-D)几何形状的矩量法相关的内存和执行时间。在本文中,我们检查了AIM在建模包含小而复杂的细节的平面结构时的效率,就像螺旋天线和缝隙天线一样。由于包含非常小的特征而导致大量未知数,因此这种几何形状需要很高的细分。 AIM具有将原始网格转换为等效的稀疏均匀网格的能力,非常适合于此类几何的分析。在本文的后半部分,我们将演示AIM在腔后天线的有限元边界积分公式中的应用。

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