Analytical performance estimation and optimization of cooperative multi-channel phase locked loops

G. Poberezhskiy
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Abstract

Cooperative phase tracking enhances the mitigation of phase errors common for all channels, such as errors caused by phase noise of a local oscillator (LO) in multichannel receivers. Analysis and optimization of phase-locked loops (PLLs) in cooperative mode is significantly more complex than that of standalone PLLs, and to date their performance characteristics and optimal parameters are obtained numerically or by simulations. This complicates trade studies and implementation of cooperative phase tracking. In this paper, simple closed-form estimates for tracking errors and thresholds, as well as optimal noise bandwidths and filter coefficients of PLLs in cooperative mode have been derived for the case of mitigation of 1/f3 LO phase noise. The obtained equations can also be used to evaluate the applicability of cooperative phase tracking concept to a given scenario. An example of signal tracking with strong LO phase noise is analyzed, and good agreement between analytical results and simulations is demonstrated.
协同多通道锁相环的分析性能估计与优化
协同相位跟踪增强了对多通道接收机中由本振(LO)相位噪声引起的相位误差的抑制作用。合作模式下锁相环的分析与优化要比独立锁相环复杂得多,迄今为止,锁相环的性能特征和最优参数都是通过数值或仿真得到的。这使贸易研究和合作阶段跟踪的实施变得复杂。本文推导了在1/f3低相噪情况下,合作模式下锁相环跟踪误差和阈值的简单闭式估计,以及最优噪声带宽和滤波器系数。所得方程也可用于评价协同相位跟踪概念对给定场景的适用性。分析了一个具有强本相噪声的信号跟踪实例,分析结果与仿真结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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