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A Lumped Circuit for Wideband Impedance Matching of a Non-Resonant, Short Dipole or Monopole Antenna

机译:非谐振,短偶极或单极天线宽带阻抗匹配的集总电路

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A new technique is proposed for wideband impedance matching of short dipole- or monopole-like antennas in the VHF-UHF bands. Instead of constructing the network topology for every particular antenna, we propose a simple network of one fixed topology. This network is an inductive L-section cascaded with a high-pass T-section. The network includes five discrete components—three inductors and two capacitors. Although the approach is not general, the paper proves that matching with the present network is close to the theoretical limit impedance matching confirmed by Bode-Fano theory. The matching performance also approaches the performance of the Carlin's equalizer for short dipoles and monopoles. The dipoles and monopoles may have different shape and different matching bandwidths. By using the matching circuit of fixed topology we avoid greater difficulties related to the practical realization of the Carlin's equalizer. The key point is to minimize the antenna's matching network complexity (and loss) so that the circuit can be designed and constructed in a straightforward manner.
机译:提出了一种新的技术,用于在VHF-UHF频段内对短偶极或单极天线进行宽带阻抗匹配。代替为每个特定天线构建网络拓扑,我们提出一种具有一个固定拓扑的简单网络。该网络是一个电感L形部分,与高通T形部分级联。该网络包括五个分立组件-三个电感器和两个电容器。尽管该方法并不通用,但本文证明了与现有网络的匹配已接近由Bode-Fano理论确定的理论极限阻抗匹配。对于短偶极子和单极子,匹配性能也接近卡林均衡器的性能。偶极子和单极子可以具有不同的形状和不同的匹配带宽。通过使用固定拓扑的匹配电路,我们避免了与卡林均衡器的实际实现相关的更大困难。关键是最大程度地减少天线的匹配网络复杂性(和损耗),以便可以直接设计和构建电路。

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