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Two-Probe Waveguide Orthomode Transducer With Twofold Rotational Symmetry

机译:具有双重旋转对称的双探针波导矫形器换能器

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摘要

A novel (patent pending) waveguide orthomode transducer (OMT) design is presented. The use of a common waveguide cross section with twofold rotational symmetry is proposed to mitigate the typical drawbacks of a two-probe OMT geometry. In particular, the cross-polarized electric field component may be reduced by introducing a twofold rotationally symmetric cross-sectional design with slant axes in the reference frame defined by the directions of the two coupling probes. Interestingly, it is also demonstrated that this solution may be used directly in the probing area to either reduce the cross-polarized field component or to reduce the probe-to-probe coupling. The aspect ratio of the required asymmetric section is close to 1, and the design has limited impact on other signals when used as an orthomode junction (OMJ) in multifrequency feed systems. Two designs, one with dual-linear operation and one with dual-circular operation, are optimized in K-band (17.7-20.2 GHz). Good agreement is found between simulated and measured data, validating the concept. This solution is of interest for the design of future multifrequency feed systems onboard broadband communication satellites.
机译:提出了一种新颖(专利申请)波导矫正器换能器(OMT)设计。提出使用具有双重旋转对称性的共同的波导横截面以减轻双探针OMT几何形状的典型缺点。特别地,可以通过在由由两个耦合探针的方向限定的参考框架中引入具有倾斜轴的双重旋转对称的横截面设计来减小交叉偏振电场分量。有趣的是,还证明了该解决方案可以直接用于减少交叉极化场分量或减少探针到探针耦合。所需的非对称部分的纵横比接近1,并且当在多频进料系统中用作正轨结(OMJ)时,设计对其他信号的影响有限。两个设计,一个具有双线性操作和具有双圆形操作的设计,在K波段进行了优化(17.7-20.2 GHz)。模拟和测量数据之间发现了良好的一致性,验证概念。该解决方案对宽带通信卫星的未来多频馈送系统的设计感兴趣。

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