首页> 外文会议>Proceedings of the 2016 IEEE-APS Topical Conference on Antennas and Propagationin Wireless Communications >An optimum design of low-profile ultra-wideband HF skeletal wire duoconical monopole antenna with parasitic grounded poles
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An optimum design of low-profile ultra-wideband HF skeletal wire duoconical monopole antenna with parasitic grounded poles

机译:具有寄生接地极的薄型超宽带HF骨架双锥单极天线的优化设计

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This paper presents a low profile ultra-wideband HF skeletal wire duoconical monopole antenna with parasitic grounded poles, which is then optimally designed using an efficient tool called charge and current marching-on-in-time (CCMOT) algorithm for analyzing thin-wire antennas together with the genetic algorithm (GA). As a result, an ultra-wideband HF antenna working between 7.5MHz and 25MHz is obtained, which is only less than one-fifth maximum wavelength high and composed of five wires and five grounded poles. Its VSWR in the whole frequency band is no more than 2.5 and the computed gain is above 0dBi when erected on a real ground through a metal grid ground screen. The design in the paper is of great significance to the HF communication or multi-band HF surface wave radar.
机译:本文提出了一种具有寄生接地极的超薄型超宽带HF骨架骨架双锥单极天线,然后使用称为电荷和电流按时行进(CCMOT)算法的高效工具对薄线天线进行了优化设计。以及遗传算法(GA)。结果,获得了工作在7.5MHz至25MHz之间的超宽带HF天线,该天线仅比最大波长高的五分之一小,并且由五根电线和五个接地极组成。在整个频段上的VSWR不超过2.5,并且通过金属网格接地屏架设在真实地面上时,计算出的增益高于0dBi。本文的设计对HF通信或多频带HF表面波雷达具有重要意义。

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