Beamforming Techniques for Resilient Navigation with Small Antenna Arrays

ENC 2023 Pub Date : 2023-10-29 DOI:10.3390/enc2023-15466
Lucía Pallarés-Rodríguez, Sergi Locubiche-Serra, Guillem Foreman-Campins, G. Seco-Granados, J. López-Salcedo
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Abstract

: This paper presents a comparative benchmarking of different beamforming techniques for robust multipath and spoofing mitigation in handheld receivers equipped with a small number of antenna elements. In the field of Global Navigation Satellite Systems (GNSSs), multipath and spoofing have become major sources of signal degradation, whereby the presence of closely spaced replicas of the signal of interest hampers the receiver’s performance. Spatial filtering through the use of antenna arrays is one appealing approach to combat these effects. However, the upward trend in device miniaturization poses a serious concern for spatial filtering in handheld devices such as tablets or smartphones, particularly for the case of decimeter-wave signals such as in GNSSs. The terminal size constraints lead to deploying arrays with very few antennas, thus degrading the mitigation performance of the above impairments. This work explores the feasibility of performing robust multi-path and spoofing mitigation in GNSS receivers with antenna arrays of very small sizes. Simulation results on four-antenna rectangular and two-antenna linear array distributions are provided, showing that the reduction in array size can be counteracted by the use of advanced beamformers.
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利用小型天线阵列实现弹性导航的波束成形技术
:本文介绍了不同波束成形技术的比较基准,以在配备少量天线元件的手持接收器中实现稳健的多径和干扰缓解。在全球导航卫星系统(GNSS)领域,多径和spoofing 已成为信号衰减的主要来源,其中相关信号的紧密间隔复制品的存在妨碍了接收器的性能。通过使用天线阵列进行空间分层是消除这些影响的一种有吸引力的方法。然而,设备微型化的发展趋势给平板电脑或智能手机等手持设备的空间截波带来了严重的问题,尤其是在十亿分波信号的情况下,如全球导航卫星系统。终端尺寸的限制导致部署的天线阵列数量极少,从而降低了上述损伤的缓解性能。这项研究探索了在采用极小尺寸天线阵列的全球导航卫星系统接收器中执行稳健的多路径和溅射抑制的可行性。本文提供了四天线矩形阵列和双天线线性阵列分布的仿真结果,表明阵列尺寸的减小可以通过使用先进的波束形成器来抵消。
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