Stability and Transient Dynamics of PLLs in Theory and Experiments

R. Riaz, D. Prousalis, C. Hoyer, J. Wagner, F. Ellinger, F. Jülicher, L. Wetzel
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引用次数: 1

Abstract

This paper presents a generalization of the classical phase-locked loop (PLL) theory. It includes the effects of time-delays and mutual coupling between PLLs. Two methods for finding stable solutions to locked states and their transient dynamics are discussed. The theoretical predictions of these methods are verified by experimental measurements obtained of a classical PLL entrained by a clock. For entrainment the generalized and classical PLL theory overlap. The analysis correctly predicts the phase-relations of phase-locked states, the loop-gain dependency on the component characteristics and time-delays and the transient dynamics, i.e., perturbation decay rate and the frequency of perturbation decay. Thus the generalized theory allows a deeper understanding of a PLL’s response. The model covers PLLs of arbitrary order and number of inputs.
锁相环的稳定性和瞬态动力学理论与实验
本文对经典锁相环理论进行了推广。它包括时延和锁相环之间的相互耦合的影响。讨论了求锁定态稳定解及其瞬态动力学的两种方法。这些方法的理论预测被一个时钟携带的经典锁相环的实验测量所证实。对于夹带,广义锁相环理论与经典锁相环理论重叠。分析正确地预测了锁相态的相位关系、环增益对元件特性和时延的依赖以及瞬态动力学,即摄动衰减率和摄动衰减频率。因此,广义理论可以更深入地理解锁相环的响应。该模型涵盖任意顺序和输入数量的锁相环。
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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