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Electromagnetic Field Coupling between a Probe and a Rectangular Aperture Mounted on Open-ended Cavity

机译:探头和安装在开放式腔体上的矩形孔之间的电磁场耦合

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This paper presents the electromagnetic-field coupling between a probe and rectangular aperture mounted on open-ended cavity. The field characteristics of the rectangular aperture primarily depend on the mode distribution of the electromagnetic field inside the structure. The significant parameters that have strong influence to the mode distribution are the size of the aperture cross section, the length of the cavity, the location and the length of the probe. In the design, the aperture cross section should be selected to let only specified mode can be propagated. However, when the probe is contained inside the cavity, the discontinuity inside the cavity is occurred that makes the field distribution to be disturbed. Therefore, the mode distribution becomes complex in the vicinity of the probe. The mode truncation for various distances from the probe is necessary in order to accomplish the accurate results to find the radiation characteristics. The criteria for the mode truncation are first specified to yield efficient field solution. Subsequently, the finite number of the mode summation is determined to achieve the convergent condition. Furthermore, the radiation characteristics are obtained by using the dyadic Green function. The results from this work are significant to further design of this structure in the microwave and millimeter wave devices.
机译:本文介绍了安装在开口腔上的探针和矩形孔之间的电磁场耦合。矩形孔径的场特性主要取决于结构内部电磁场的模式分布。对模式分布具有强烈影响的重要参数是孔径横截面的尺寸,腔体的长度,探针的位置和长度。在设计中,应选择光圈横截面以使仅可以传播指定的模式。然而,当探针包含在腔体内时,发生腔内的不连续性,使得使场分布被扰乱。因此,模式分布在探针附近变得复杂。探针的各种距离的模式截断是必要的,以实现准确的结果以找到辐射特性。首先指定模式截断的标准以产生有效的现场解决方案。随后,确定模式求和的有限数量以实现收敛条件。此外,通过使用二元绿色功能获得辐射特性。这项工作的结果对于微波和毫米波装置进一步设计这种结构的重要性。

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