首页> 外文期刊>IEICE Transactions on fundamentals of electronics, communications & computer sciences >Impedance Characteristic Analysis of an Axial Slot Antenna on a Sectoral Cylindrical Cavity Excited by a Probe Using Method of Moments
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Impedance Characteristic Analysis of an Axial Slot Antenna on a Sectoral Cylindrical Cavity Excited by a Probe Using Method of Moments

机译:基于矩量法的探头激励扇形圆柱腔上轴向缝隙天线阻抗特性分析

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摘要

This paper presents the analysis of the impedance characteristics of a sectoral cylindrical cavity-backed axial slot antenna excited by a probe. The integral equations are derived based on boundary conditions of the proposed structure and they are expressed in terms of dyadic Green functions and unknown current densities. The dyadic Green functions are obtained by using the eigenfunction expansion method together with application of scattering superposition techniques. The unknown current densities are solved by the Method of Moments. The input impedance is subsequently determined from the unknown electric current density at the probe. Numerical results of input impedance and return loss are demonstrated as functions of frequency for various parameters such as cavity length, cavity radius ratio, slot location in φ direction, slot length and probe length. Calculated results are validated by the measurements. At the operating frequency, it is found that the result is sufficiently accurate. The results from this study are very useful for the design of a sectoral cylindrical cavity-backed axial slot array antenna excited by a probe with omnidirectional beam radiation.
机译:本文分析了扇形圆柱腔背衬轴向缝隙天线在探头激励下的阻抗特性。积分方程基于所提结构的边界条件推导,并用二元格林函数和未知电流密度表示。利用特征函数展开法和散射叠加技术得到二元格林函数。未知电流密度通过矩量法求解。输入阻抗随后根据探头处的未知电流密度确定。输入阻抗和回波损耗的数值结果显示为各种参数的频率函数,例如腔体长度、腔体半径比、槽方向φ位置、槽长度和探头长度。计算结果通过测量进行验证。在工作频率下,发现结果足够准确。研究结果对于设计由全向波束辐射探头激发的扇形圆柱腔背衬轴向缝隙阵列天线具有重要意义。

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