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Tracking Bias of Navigation Signal on Performance of Post-correlation MMSE Anti-jamming Algorithm

机译:导航信号的跟踪偏差对后相关MMSE抗干扰算法性能的影响

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Adaptive antenna array technique is an effective method for interference mitigation in Global Navigation Satellite Systems (GNSS) receivers. Among which, minimum mean square error (MMSE) algorithm could maximize the GNSS signal and reject interference, by minimizing the mean-square-error between the array output and a reference signal. Its performance depends on the reference signal that used. In practice, an ideal reference signal is difficult to obtain directly due to the low power of satellite signals. Thus MMSE algorithm is usually performed after code correlation when a local reference signal could be recovered from tracking results. However, due to the existence of tracking bias, the recovered local reference signal will deviate from an ideal one, resulting in performance deterioration. This paper analyzes the impact of tracking bias including code phase bias, carrier phase bias and carrier frequency bias, on performance of the post-correlation MMSE algorithm. The results show that, the loss of the array output SINR (signal to interference plus noise ratio) caused by tracking bias is ignorable considering the precision of the current tracking loops techniques. The performance of the post-MMSE algorithm approaches to that of an optimal beamformer.
机译:自适应天线阵列技术是缓解全球导航卫星系统(GNSS)接收器干扰的有效方法。其中,最小均方误差(MMSE)算法可以通过最小化阵列输出和参考信号之间的均方误差来最大化GNSS信号并抑制干扰。其性能取决于所使用的参考信号。实际上,由于卫星信号的功率低,很难直接获得理想的参考信号。因此,当可以从跟踪结果中恢复本地参考信号时,通常在代码相关之后执行MMSE算法。但是,由于存在跟踪偏置,恢复的本地参考信号将偏离理想信号,导致性能下降。本文分析了包括代码相位偏置,载波相位偏置和载波频率偏置在内的跟踪偏置对后相关MMSE算法性能的影响。结果表明,考虑到当前跟踪环路技术的精度,由跟踪偏置引起的阵列输出SINR(信号与干扰加噪声比)的损失是可忽略的。 MMSE后算法的性能接近最佳波束形成器的性能。

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