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An approximate method to calculate the reflection coefficient of a rectangular open-ended waveguide

机译:计算矩形开放式波导的反射系数的近似方法

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The open-ended rectangular waveguide is a simple radiating structure, and a lot of effort is being spent on calculating the reflection coefficient or admittance of the structure accurately. In order to improve the accuracy of the result, more rectangular waveguide higher order modes are considered. Meanwhile, amount of computation is increased. A major thrust of the paper is to discuss approaches and strategies for calculating the reflection coefficient of the open-ended rectangular waveguide with a flange radiating directly into the half-space efficiently. The method involving Fourier analysis and waveguide mode expansion method is showed. According to the previous works and results, only TE30 mode which has a greater influence on the accuracy of numerical results than other higher modes is considered to be calculated. The VSWR and phase of the X-band rectangular terminated with a finite size flange were simulated by HFSS, and the measurements also were obtained. The flange of waveguide is discussed with finite size. On the basis of simulation results, the size of flange was determined as 40 cm square, and the aperture is 22.86 mm × 10.16 mm. The numerical results are in good agreement with simulation and measured results. The VSWR maximum deviation is less than 0.05 and the phase maximum deviation is less than 10 degrees between numerical and measured results during the effective calibration frequency range.
机译:开放式矩形波导是一种简单的辐射结构,在准确计算结构的反射系数或导纳上花费了很多精力。为了提高结果的精度,考虑了更多的矩形波导更高阶模式。同时,增加了计算量。本文的主要目的是讨论有效计算带有法兰直接辐射到半空间中的开放式矩形波导的反射系数的方法和策略。给出了涉及傅立叶分析和波导模式扩展的方法。根据先前的工作和结果,仅考虑计算TE30模式,该模式对数值结果的准确性的影响大于其他更高模式。用HFSS模拟了端接有限尺寸法兰的X波段矩形的VSWR和相位,并获得了测量结果。讨论了波导的法兰尺寸是有限的。根据模拟结果,确定法兰尺寸为40平方厘米,孔径为22.86毫米×10.16毫米。数值结果与仿真和测量结果吻合良好。在有效校准频率范围内,数值与测量结果之间的VSWR最大偏差小于0.05,相位最大偏差小于10度。

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