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Energy-based analysis of frequency entrainment described by van der Pol and phase-locked loop equations

机译:Van der Pol和锁相环方程描述的基于能量的频率夹带分析

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This paper analyzes frequency entrainment described by van der Pol and phase-locked loop (PLL) equations. The PLL equation represents the dynamics of a PLL circuit that appear in typical phase-locking phenomena. These two equations describe frequency entrainment by a periodic force. The entrainment originates from two different types of limit cycles: libration for the van der Pol equation and rotation for the PLL one. To explore the relationship between the geometry of limit cycles and the mechanism of entrainment, we investigate the entrainment using an energy balance relation. This relation is equivalent to the energy conservation law of dynamical systems with dissipation and input terms. We show response curves for the dc component, harmonic amplitude, phase difference, and energy supplied by a periodic force. The obtained curves indicate that the entrainments for the two equations have different features of supplied energy, and that the entrainment for the PLL equation possibly has the same mechanism as does the regulation of the phase difference for the van der Pol equation. (c) 2007 American Institute of Physics.
机译:本文分析了范德波尔和锁相环(PLL)方程描述的频率夹带。 PLL方程表示出现在典型锁相现象中的PLL电路的动态特性。这两个方程描述了周期性力引起的频率夹带。夹带来自两种不同类型的极限循环:范德波尔方程的解放和PLL的旋转。为了探索极限循环的几何形状与夹带机制之间的关系,我们使用能量平衡关系来研究夹带。该关系等效于具有耗散和输入项的动力系统的能量守恒定律。我们显示了直流分量,谐波幅度,相位差和周期性力提供的能量的响应曲线。所获得的曲线表明,两个方程的夹带具有不同的能量供应特征,并且PLL方程的夹带可能具有与范德波尔方程的相位差调节相同的机制。 (c)2007年美国物理研究所。

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