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首页> 外文期刊>Chinese Journal of Systems Engineering and Electronics >Adaptive beamforming and phase bias compensation for GNSS receiver
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Adaptive beamforming and phase bias compensation for GNSS receiver

机译:GNSS接收机的自适应波束成形和相位偏置补偿

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摘要

Adaptive antenna arrays have been used to mitigate the interference on global navigation satellite system (GNSS) receivers. The performance of interference mitigation depends on the beamforming algorithms adopted by the antenna array. However, the adaptive beamforming will change the array pattern in realtime, which has the potential to introduce phase center biases into the antenna array. For precise applications, these phase biases must be mitigated or compensated because they will bring errors in code phase and carrier phase measurements. A novel adaptive beamforming algorithm is proposed firstly, then the phase bias induced by the proposed algorithm is estimated, and finally a compensation strategy is addressed. Simulations demonstrate that the proposed beamforming algorithm suppresses effectively the strong interference and improves significantly the capturing performance of GNSS signals. Simultaneously, the bias compensation method avoids the loss of the carrier phase lock and reduces the phase measurement errors for GNSS receivers.
机译:自适应天线阵列已被用来减轻对全球导航卫星系统(GNSS)接收机的干扰。缓解干扰的性能取决于天线阵列采用的波束成形算法。但是,自适应波束成形将实时更改阵列方向图,这有可能将相位中心偏置引入天线阵列。对于精确的应用,必须减轻或补偿这些相位偏置,因为它们会在代码相位和载波相位测量中带来误差。首先提出了一种新的自适应波束成形算法,然后对该算法引起的相位偏移进行了估计,最后提出了一种补偿策略。仿真结果表明,提出的波束赋形算法有效抑制了强干扰,并显着提高了GNSS信号的捕获性能。同时,偏置补偿方法避免了载波锁相的损失,并减少了GNSS接收机的相位测量误差。

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