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Optimized ADI-FDTD analysis of circularly polarized microstrip and dielectric resonator antennas

机译:圆极化微带和介质谐振器天线的ADI-FDTD优化分析

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摘要

A dispersion-optimized alternating-direction implicit finite-difference time-domain (ADI-FDTD) method is presented in this letter for the accurate modeling of complex electromagnetic structures. The analysis focuses on circularly polarized slot-coupled microstrip and dielectric resonator antennas. Introducing a class of three-dimensional spatial/temporal operators, the novel algorithm yields robust curvilinear grids which efficiently treat fine details and interfaces. Hence, the serious dispersion errors of the usual schemes, as time-steps surpass the Courant limit, are greatly reduced, enabling fast broad-band simulations. Numerical validation confirms the above merits via various realistic structures.
机译:本文针对复杂电磁结构的精确建模,提出了一种色散优化的交替方向隐式有限差分时域(ADI-FDTD)方法。分析的重点是圆极化缝隙耦合微带天线和介电共振器天线。引入一类三维空间/时间算子,该新算法产生了有效处理精细细节和界面的鲁棒曲线网格。因此,当时间步长超过Courant极限时,通常方案的严重色散误差将大大降低,从而实现快速宽带仿真。数值验证通过各种现实结构证实了上述优点。

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