Effects of multiple CW interferers on carrier synchronization

M.F. Karsi, W. Lindsey
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引用次数: 3

Abstract

In this paper the modeling and analysis of the effects of multiple CW interferers on phase locked loop performance is conducted such that the operating vulnerability to jamming, interference or multipath can be accessed. First, in the absence of additive noise and presence of interference within the loop passband, a statistical model is developed which demonstrates the effect of multiple CW interferers on the phase error process. The steady state phase error is characterized statistically through its probability density function and moments. The conditions for keeping locked and the probability that the loop stays locked to the desired carrier frequency are derived for arbitrary loop filter characteristics. A novel outage criterion is established for the satisfactory operation of the loop and outage probabilities are presented for certain operating scenarios. Second, assuming the presence of additive white Gaussian noise, a Fokker Planck analysis is conducted in order to obtain the probability density function, moments and cycle slip rates of the phase error process.
多个连续波干扰对载波同步的影响
本文对多个连续波干扰对锁相环性能的影响进行了建模和分析,从而了解了锁相环在干扰、干扰或多径下的工作脆弱性。首先,在没有加性噪声和环路通带内存在干扰的情况下,建立了一个统计模型,该模型展示了多个连续波干扰对相位误差过程的影响。稳态相位误差通过其概率密度函数和矩量进行统计表征。针对任意环路滤波器的特性,导出了环路保持锁定的条件和环路保持锁定到期望载波频率的概率。建立了回路满意运行的新的中断准则,并给出了特定运行情景下的中断概率。其次,假设存在加性高斯白噪声,进行Fokker - Planck分析,得到相位误差过程的概率密度函数、矩和周滑移率。
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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