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Investigation of Wire Grid Modeling in NEC Applied to Determine Resonant Cavity Quality Factors

机译:用于确定谐振腔质量因数的NEC中的线栅建模研究

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Numerical computer simulations using the NEC Method of Moments (MoM) code were performed on wire grid models of resonant cavities in order to study how well conductive structures and their surface impedances can be modeled by wire meshes. The resonant cavity quality factor, or Q, was examined due to its high sensitivity to surface impedance. Several half-wave coaxial cavities were simulated using various mesh element sizes. The cavities' outer conductor radius was varied to obtain different geometries. The quality factor Q was determined from the simulated input impedance spectra. The wire grid model results were compared to well known theoretical and experiment results. Qualitative agreement between simulation, theoretical, and experimental results was achieved for fixed mesh parameters, giving confidence in comparative simulation using the same wire grid meshing parameters. Quantitative agreement of simulation results was achieved through repeated simulation with varying mesh element lengths and extrapolating the simulation results to a conceptual mesh element length of zero. This shows that simulations to determine quantities sensitive to surface impedances can be successfully performed with codes such as NEC.
机译:在共振腔的线栅模型上使用NEC矩量法(MoM)代码进行了数值计算机仿真,以研究如何通过线网对导电结构及其表面阻抗进行建模。由于谐振腔品质因数对表面阻抗的高灵敏度,因此对其进行了检查。使用各种网格元素尺寸模拟了几个半波同轴腔。改变空腔的外导体半径以获得不同的几何形状。品质因数Q由模拟输入阻抗谱确定。将线栅模型结果与众所周知的理论和实验结果进行了比较。对于固定的网格参数,在仿真,理论和实验结果之间取得了定性的一致,使使用相同的线栅网格参数进行比较仿真具有信心。通过使用变化的网格元素长度进行重复仿真并将仿真结果外推到概念性网格元素长度为零,可以实现仿真结果的定量一致性。这表明可以使用诸如NEC之类的代码成功执行模拟以确定对表面阻抗敏感的量。

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