Antenna technology for mobile satellite radio reception

S. Lindenmeier, L. Reiter, J. Kammerer, S. Senega
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引用次数: 4

Abstract

For mobile satellite radio reception in cars high demands are made to the antennas with respect to gain, efficiency, volume requirements and mounting conditions as well as reliable reception in fading environment. In comparison to common antennas for satellite digital audio radio services (SDARS) as well as for navigation services, new types of single satellite antennas and combinations for antenna diversity are shown. New ring antennas of type “Scarabeus” show a significantly higher performance compared to common patch antennas. In severe fading scenarios a set of up to three SDARS antennas, which are located together within a mounting volume of only around 1.5" × 1.5" × 0.5" together with an appropriate scan-phase diversity circuitry lead to a reduction of mute rates by more than one order of magnitude. This diversity technology enables for the first time the use of critical mounting positions like in side mirrors or on the dashboard, which would never be used for single antennas.
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移动卫星无线电接收天线技术
车载移动卫星无线电接收对天线的增益、效率、体积要求、安装条件以及衰落环境下的可靠接收都提出了很高的要求。与用于卫星数字音频无线电业务(SDARS)和导航业务的普通天线相比,展示了新型的单卫星天线和用于天线分集的组合。新型“Scarabeus”型环形天线与普通贴片天线相比,性能显著提高。在严重的衰落情况下,一组多达三个SDARS天线,它们位于一起,安装体积仅为1.5“× 1.5”× 0.5“,加上适当的扫描相位分集电路,导致静音率降低一个数量级以上。这种分集技术首次实现了在侧视镜或仪表盘等关键安装位置的使用,这些位置永远不会用于单天线。
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