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Miniaturisation of wideband antennas by means of feed line topology alterations

机译:通过改变馈线拓扑结构使宽带天线小型化

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It is a common practice to achieve reduction of wideband antenna size by incorporating appropriate geometrical modifications into conventional antenna topologies (e.g. monopoles or uniplanar structures). The authors investigate a particular type of modification, which is changing the geometry of the feed line. The two basic geometries include a taper and a stepped-impedance line. They carry out systematic investigations concerning the effect of these feed line geometries on obtainable antenna miniaturisation rates. For the sake of generality, feed line geometries of various complexities are considered (from two to six sections). An automated adjustment of antenna geometry parameters through numerical optimisation is performed to ensure design optimality for each combination of antenna/feed structure. The optimisation process is formulated as an explicit size reduction task with a constraint on the maximum in-band reflection level. The investigations are performed using two selected ultra-wideband monopoles. The results indicate clear advantage of the stepped-impedance feed line over the tapered one. On the other hand, considerable size reduction can be obtained by increasing the geometrical complexity of the feed line, although the design problem becomes more challenging due to the increased number of antenna parameters. Numerical results are validated experimentally for selected antenna prototypes.
机译:通过将适当的几何修改并入常规天线拓扑结构(例如单极或单平面结构)中来实现宽带天线尺寸的减小是一种常见的做法。作者研究了一种特殊类型的修改,该修改正在更改馈线的几何形状。这两个基本几何形状包括锥度和步进阻抗线。他们对这些馈线几何形状对可获得的天线小型化率的影响进行了系统的研究。为了通用起见,考虑了各种复杂的馈线几何形状(从两个到六个部分)。通过数值优化对天线几何参数进行自动调整,以确保针对天线/馈电结构的每种组合设计最佳性。优化过程被公式化为明确的尺寸缩减任务,并限制了最大带内反射级别。使用两个选定的超宽带单极子进行研究。结果表明步进阻抗馈线明显优于锥形馈线。另一方面,尽管由于天线参数数目的增加而使设计问题变得更具挑战性,但是通过增加馈线的几何复杂度可以实现相当大的尺寸减小。数值结果通过实验验证了所选天线原型的有效性。

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