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Performance analysis and design of the optimal frequency-assisted phase tracking loop

机译:最优频率辅助相位跟踪环的性能分析与设计

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摘要

The frequency-assisted phase tracking (FAPT) is investigated extensively in comparison with the phase tracking (PT) in a Kalman filter (KF) frame to explore the role the augmented frequency measurement plays in FAPT. It is found that the FLL-assisted PLL is suboptimal in structure, while the FAPT is optimal in the minimum variance sense. Hence, the KF frame provides not only a rational method to compare the FAPT with the PT but also an insight into the effects of frequency and phase measurements on PT. The impact of the two typical discriminators, ATAN and ATAN2, on the phase tracking performance in the FAPT and the PT is studied by Monte Carlo simulations and covariance analysis. The results show that the pull-in range affects the lock-in threshold, and the linear region determines the performance under high dynamic environments. In addition, the measurement variance dominates the tracking accuracy under weak signal conditions. The phase discriminator governs the performance of the FAPT. In terms of both the tracking accuracy and the lock-in threshold, the augmented frequency measurement in the FAPT filters is very helpful in tracking the high dynamic signal, but it contributes little to the weak signal tracking.
机译:与卡尔曼滤波器(KF)帧中的相位跟踪(PT)相比,广泛地研究了频辅相跟踪(FAPT),以探索增强频率测量播放的作用。结果发现,FLL辅助PLL结构次优,而在最小方差义上的速度是最佳的。因此,KF帧不仅提供了与PT的速度比较速度的理性方法,还提供了对PT频率和相位测量的影响的洞察。通过蒙特卡罗模拟和协方差分析,研究了两个典型鉴别器,atan和atan2对CAPT和PT的相位跟踪性能的影响。结果表明,上拉范围会影响锁定阈值,线性区域在高动态环境下确定性能。此外,测量方差在弱信号条件下主导跟踪精度。阶段鉴别者管理临时的表现。就跟踪精度和锁定阈值而言,CAPT滤波器中的增强频率测量非常有助于跟踪高动态信号,但它对弱信号跟踪有很少有助于。

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