A Method for Calculating Phase-Locked Loop Performance Near Threshold

R. Tausworthe
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引用次数: 9

Abstract

Although several methods have evolved over the past few years for analyzing the near-threshold behavior of phaselocked devices, none so far have been able conveniently to integrate all desirable aspects of an engineering method which requires both accuracy and simplicity of formulation. This paper contains a method conceptually as simple as the linear and quasi-linear techniques, but with the added advantage that it is much more accurate near loop threshold-an accuracy, by the way, which increases as the order of the loop increases and as the loop bandwidth decreases. For the simple first-order loop, which is the one this method predicts with least fidelity, the result follows the known exact carrier tracking result with a maximum error of less than 0.08 radians in the rms phase error at system threshold. Compared to actual measurements of carrier tracking secondorder loop performance, the method provided excellent agreement, nominally within 0.05 radians at a\sigma^{2} = 1.
一种近阈值锁相环性能计算方法
虽然在过去的几年中已经发展了几种方法来分析锁相器件的近阈值行为,但到目前为止,还没有一种方法能够方便地将需要精确和简单表述的工程方法的所有理想方面结合起来。本文包含了一种在概念上与线性和准线性技术一样简单的方法,但具有附加的优点,即它在环路阈值附近更加精确——顺便说一下,这种精度随着环路阶数的增加和环路带宽的减少而增加。对于该方法预测保真度最低的简单一阶环路,其结果与已知的精确载波跟踪结果一致,在系统阈值处的均方根相位误差最大误差小于0.08弧度。与载波跟踪二阶环路性能的实际测量结果相比,该方法提供了极好的一致性,名义上在0.05弧度范围内,a\sigma^{2} = 1。
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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