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Compact antenna array receiver for robust satellite navigation systems

机译:紧凑型天线阵列接收器,用于坚固的卫星导航系统

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A compact navigation receiver comprising a decoupled and matched four-element L1-band antenna array with an inter-element separation of a quarter of the free-space wavelength is presented in this paper. We investigate the impact of the decoupling and matching network on the robustness of the navigation receiver. It is observed that in order to achieve high robustness with a compact antenna array, it is necessary to employ a decoupling and matching network, particularly in case of three spatially separated interferers. Furthermore, we study the influence of the polarization impurity of the compact planar antenna array on the equivalent carrier-to-interference-plus-noise ratio (CINR) of the receiver when impinged with different numbers of diametrically polarized interference signals. It is shown that the higher-order modes possess strong polarization impurity, which may halve the available degrees-of-freedom for nulling in the presence of linear-polarized interferers, using a conventional null-steering algorithm. We verify the robustness of the designed compact receiver by means of a complete global-navigation-satellite-system demonstrator. It is shown that the maximum jammer power that is allowed us to maintain the CINR above 38 dBHz with three interferers can be improved by more than 10 dB if a decoupling and matching network is employed.
机译:本文提出了一种紧凑的导航接收机,该接收机包括经过解耦和匹配的四元素L1波段天线阵列,其元素间间隔为自由空间波长的四分之一。我们研究了去耦和匹配网络对导航接收机鲁棒性的影响。可以看出,为了用紧凑的天线阵列实现高鲁棒性,必须采用去耦和匹配网络,特别是在三个空间上分开的干扰源的情况下。此外,我们研究了紧凑平面天线阵列的极化杂质在受到不同数量的径向极化干扰信号撞击时对接收机的等效载波干扰加噪声比(CINR)的影响。结果表明,高阶模具有很强的极化杂质,使用常规的零转向算法,可以将存在线性极化干扰物时用于归零的自由度减半。我们通过完整的全球卫星导航系统演示器验证了设计紧凑型接收机的鲁棒性。结果表明,如果采用去耦和匹配网络,则在三个干扰源的情况下,允许我们将CINR维持在38 dBHz以上的最大干扰功率可以提高10 dB以上。

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