首页> 外文期刊>The Journal of Microwave Power & Electromangnetic Energy >FDTD ANALYSIS OF DIELECTRIC-LOADED LONGITUDINALLY SLOTTED RECTANGULAR WAVEGUIDES
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FDTD ANALYSIS OF DIELECTRIC-LOADED LONGITUDINALLY SLOTTED RECTANGULAR WAVEGUIDES

机译:介电纵向开缝矩形波导管的FDTD分析

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摘要

A versatile electromagnetic (EM) computational algorithm, based on the Finite-Difference Time-Domain (FDTD) technique, is developed to analyze longitudinally oriented, square-ended, single slot fixtures and slot-pair configurations cut in the broad wall of a WR-975 guide operating at a frequency of 915 MHz. The finite conductivity of the wave guide walls is accounted for by employing a time-domain Surface-Impedance Boundary Conditions (SIBC) formulation. The proposed FDTD algorithm has been validated against measurements performed on a probe-excited slot cut along the center line of the broad wall of a WR-284 guide and available experimental data for energy coupled from a longitudinal slot pair in the broad wall of a WR-340 guide. Numerical results are presented to exploit the influence of the constitutive parameters of the processed material as well as protective insulating window slabs mounted on the exterior surface of the slots. Particular attention is given to the resonant length, scattering parameters, and the electric field distribution within lossy objects placed in the near-field region over a range of slot offsets and workloads with extensive results being reported for the first time. It is shown that the FDTD technique can accurately predict the coupling and power absorption characteristics in loads located in the near field zone of the slotted waveguide structures and, therefore, should prove to be a powerful design tool applicable to a wide class of slotted waveguide applicators that may be difficult to analyze using other available techniques.
机译:开发了一种基于有限差分时域(FDTD)技术的通用电磁(EM)计算算法,以分析在WR宽壁上切割的纵向取向,方端,单槽夹具和槽对配置-975指南以915 MHz的频率运行。波导壁的有限电导率是通过采用时域表面阻抗边界条件(SIBC)公式解决的。所提出的FDTD算法已针对沿着WR-284波导宽壁中心线切割的探针激励槽进行的测量以及从WR宽壁中的纵向槽对耦合的能量获得的可用实验数据进行了验证-340指南。提出了数值结果,以利用加工材料的本构参数以及安装在槽外表面上的保护性隔热窗板的影响。特别关注共振长度,散射参数以及在一系列缝隙偏移和工作负载范围内放置在近场区域中的有损耗物体内的电场分布,这是首次报道了广泛的结果。结果表明,FDTD技术可以准确预测位于缝隙波导结构近场区域内的负载中的耦合和功率吸收特性,因此,FDTD技术应被证明是适用于多种缝隙波导施加器的强大设计工具使用其他可用技术可能难以分析。

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