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Ground plane impact on quadrifilar helix antenna performance with respect to deployment heights

机译:地面平面对四轮官螺旋天线性能的影响展开高度

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摘要

Quadrifilar helix antenna (QHA) has its applications in satellite communications. This paper presents the performance optimisation of input and radiation characteristics of QHA in the presence of infinite and finite metallic ground planes. For the infinite ground plane, it has been observed that input parameters such as impedance and voltage standing wave ratio (VSWR) are stable, and the antenna has broader half power beamwidth (HPBW). Smaller metallic platforms that act as finite ground planes produce better 3-dB axial ratio beamwidth and boresight axial ratio. Deployment of QHA on smaller metallic platforms such as nanosatellites and CubeSats enhances the circularly polarised beamwidth of the antenna with improved boresight axial ratio. However, on large low earth orbit (LEO) satellites, stable input characteristics and broader HPBW have been achieved at the cost of narrow circularly polarised beamwidth and degraded boresight axial ratio.
机译:四极螺旋天线(QHA)在卫星通信中具有其应用。本文介绍了无限和有限金属地面平面存在下QHA的输入和辐射特性的性能优化。对于无限的接地平面,已经观察到,诸如阻抗和电压驻距波比(VSWR)的输入参数是稳定的,并且天线具有更宽的半功率波束宽度(HPBW)。较小的金属平台,充当有限接地平面产生更好的3-DB轴向比波束宽度和光标轴向比。在较小的金属平台上部署QHA,如纳米替卫星和立方体,增强了具有改善的触觉轴向比的天线的圆极化束宽度。然而,在大型低地球轨道(LEO)卫星上,已经以窄的圆极化束宽度和降低的矛盾轴向比成本实现了稳定的输入特性和更宽的HPBW。

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