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A study in small scale antenna diversity as a means of reducing effects of satellite motion induced multipath fading for handheld satellite communications systems

机译:小规模天线多样性的研究作为卫星运动诱导多径衰落对手持式卫星通信系统的影响的一种方法

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Multipath fading will cause serious link reliability problems for future L-band handheld satellite communication systems using omnidirectional antennas. Over the past two years a study has been in progress by Virginia Tech and COMSAT Labs on the effects of multipath fading at L-band. A 1.537 GHz pilot tone from the INMARSAT II F-4 geosynchronous satellite at 55 degrees W was used as a source for long term signal level measurements with a fixed position receiver. The receive antenna was right-hand circularly polarized with hemispherical coverage. Multipath fading in excess of 10 dB was observed on numerous occasions. Since margins for the proposed handheld satcom systems are much less than 10 dB fading to this level will cause severe link degradation. The most practical solution to the problem is replacement of the conventional omnidirectional antenna with an adaptive array. Experiments at Virginia Tech have been undertaken to determine the feasibility of a multielement small scale diversity antenna for use in combating multipath fading. These studies have shown that a simple four element bi-planar patch array can produce a significant improvement in link reliability over an omnidirectional antenna. Not only was the average signal level improved by 3 to 4 dB, but the maximum fade depth was also reduced from 10 dB or more to under 3 dB. This paper describes the VA Tech experiments and presents some of the preliminary results.
机译:多径衰落将对使用全向天线的未来L波段手持卫星通信系统造成严重的链接可靠性问题。在过去两年中,弗吉尼亚技术和Comsat实验室一直在研究L频段的多路径褪色的影响。从55度W的Inmarsat II F-4 GeoSynchronous卫星的1.537GHz导频音,用作具有固定位置接收器的长期信号电平测量的源。接收天线与半球形覆盖率右手圆形偏振。在多次观察到超过10 dB的多路径衰落。由于拟议的手持式SATCOM系统的利润率远小于10dB逐渐消失,这一级别会导致严重的链接退化。问题的最实际解决方案是用自适应阵列更换传统的全向天线。已经开展了弗吉尼亚科技的实验,以确定多元首小规模分集天线的可行性,用于打击多径褪色。这些研究表明,一个简单的四个元件双平面贴片阵列可以在全向天线上产生显着改善的链路可靠性。不仅是3至4 dB的平均信号水平,而且最大淡入深度也从10 dB或更多的降低到3 dB。本文介绍了VA技术实验,并提出了一些初步结果。

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