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Interpretation of scattering phenomenology in slotted waveguidestructures via time-frequency processing

机译:缝隙波导结构中散射现象的时频处理解释

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摘要

The scattering phenomenology in slotted waveguide structures is investigated using time-frequency processing of numerically simulated data. Two geometries are studied, a finite waveguide with one slot on each end and a linear slotted waveguide array comprised of 16 equally spaced slots. The numerical simulation is accomplished via a three-dimensional moment-method procedure in conjunction with a connection scheme which makes possible the simulation of a long waveguide structure spanning over 32 wavelengths at 10 GHz. The resulting numerical data are then processed using the short-time Fourier transform to identify the dominant scattering mechanisms. In the joint time-frequency plane, the unique scattering physics associated with slotted waveguide structures are more clearly revealed. In particular, the Floquet harmonics due to the exterior slot structure, the dispersion due to the interior waveguide modes, and the “interior Floquet” phenomenon can be readily identified and fully interpreted
机译:缝隙波导结构中的散射现象是使用数值模拟数据的时频处理进行研究的。研究了两种几何形状,一种是在两端均具有一个狭缝的有限波导,另一个是由16个等间隔的狭缝组成的线性狭缝波导阵列。数值模拟是通过三维矩量法程序以及连接方案完成的,该方案可对跨越10 GHz的32个波长的长波导结构进行仿真。然后,使用短时傅立叶变换处理所得的数值数据,以识别主要的散射机制。在联合的时频平面中,与缝隙波导结构相关的独特散射物理学得到了更清晰的揭示。特别是,由于外部缝隙结构而引起的Floquet谐波,由于内部波导模式而引起的色散以及“ Interior Floquet”现象很容易识别并得到充分解释。

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