李虎,任晓飞,蔡志远,等. 一种双模式短波对数周期天线设计[J]. 电波科学学报,2022,37(1):73-78. DOI: 10.12265/j.cjors.2020251
      引用本文: 李虎,任晓飞,蔡志远,等. 一种双模式短波对数周期天线设计[J]. 电波科学学报,2022,37(1):73-78. DOI: 10.12265/j.cjors.2020251
      LI H, REN X F, CAI Z Y, et al. Design of a dual mode HF log-periodic antenna[J]. Chinese journal of radio science,2022,37(1):73-78. (in Chinese). DOI: 10.12265/j.cjors.2020251
      Citation: LI H, REN X F, CAI Z Y, et al. Design of a dual mode HF log-periodic antenna[J]. Chinese journal of radio science,2022,37(1):73-78. (in Chinese). DOI: 10.12265/j.cjors.2020251

      一种双模式短波对数周期天线设计

      Design of a dual mode HF log-periodic antenna

      • 摘要: 为了适应电离层传播特性,使短波天线更好地与电离层环境匹配,进行大纵深覆盖,设计了一种双模式短波对数周期天线. 天线在垂直方向上由两层水平极化对数周期天线构成,通过同相和反相两种激励模式,使得天线能够同时形成低仰角辐射和高仰角辐射. 理论仿真和实际测试表明:双模式短波对数周期天线在6~30 MHz频带内,两种模式的电压驻波比(voltage standing wave ratio, VSWR)均小于2.5;低角模式仰角为20°左右,增益可达12 dBi;高角模式仰角为44°~60°左右,增益可达10 dBi. 该天线同时具备两种模式工作能力,有效改善了传统对数周期天线覆盖能力,并为短波信号多径分离研究奠定了基础.

         

        Abstract: In order to adapt to the propagation characteristics of the ionosphere and make HF antenna better match the ionospheric environment, an HF log-periodic antenna working on dual-mode propagation is designed. The antenna is composed of two log-periodic antennas in the vertical direction. The low elevation mode and high elevation mode are produced in the proposed antenna by in-phase excitation and inverse excitation respectively. The simulation and test show that the voltage standing wave ratio(VSWR) of the proposed antenna is less than 2.5 in the range of 6−30 MHz. The elevation of the antenna is of 20° and the gain is of 12 dBi for low elevation mode; for another mode, the elevation varying from 44° to 60° and the gain of 10 dBi are obtained. The proposed antenna works on two modes, which effectively improves the coverage ability of the conventional HF log-periodic antenna. The design lays a foundation for the further research of multipath separation of high frequency signals.

         

      /

      返回文章
      返回