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Theoretical investigations on equilateral triangular dielectric resonator antenna

机译:等边三角形介质谐振器天线的理论研究

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Equilateral triangular dielectric resonator antenna (ETDRA) is investigated here analytically for TMz mode. For theoretical analysis, the triangular surfaces on the top and bottom of the isolated ETDRA are modelled either as perfect magnetic conductors (PMC) or imperfect magnetic conductors (IPMC), whereas the side walls having rectangular cross-section are modelled as PMC only. The concept of reduction in effective size due to the avoidance of any corner by the electric field lines is used for the first time to predict the resonant frequency for different TMzmnp modes with an accuracy of 4%. Consequently, an expression is also given here for efficient evaluation of effective dimensions of the ETDRA for various TMzmnp modes. Closed form expressions for the far-field radiation patterns of dominant TMz101 mode are also presented using both (PMC and IPMC) models. Theoretical results are compared with published data as found in the open literature. One antenna prototype is also fabricated, tested and measured for further verification. It is found that the authors’ theoretical results are in close agreement with measured data.
机译:本文以TMz模式分析了等边三角形介电共振器天线(ETDRA)。为了进行理论分析,将隔离的ETDRA顶部和底部的三角形表面建模为完全磁导体(PMC)或不完全磁导体(IPMC),而具有矩形横截面的侧壁仅建模为PMC。由于电场线避免了任何拐角而导致的有效尺寸减小的概念首次用于以4%的精度预测不同TMzmnp模式的谐振频率。因此,这里还给出了一种表达式,用于有效评估各种TMzmnp模式的ETDRA的有效尺寸。同时使用(PMC和IPMC)模型,还给出了占主导地位的TMz101模式的远场辐射方向图的闭式表达式。将理论结果与公开文献中发现的公开数据进行比较。还制作,测试和测量了一个天线原型,以进行进一步的验证。发现作者的理论结果与实测数据非常吻合。

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