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Solution of Reduced Equations of Injection-Locked Oscillator

机译:注入锁定振荡器的简化方程式的解

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摘要

Oscillators with the primary tone synchronization and based on the frequency-divider mode have been considered in this study. The paper proposes a generalized model of injection-locked oscillator using the linear polynomial approximation of nonlinear characteristic of its amplifying element, and a new analysis technique based on peculiarities of the oscillator operation in injection-locked mode. These peculiarities imply that the oscillation amplitude can be considered as steady-state at an arbitrary instantaneous value of phase shift and that the curvature of phase characteristic of the oscillator decreases with the rise of synchronization signal amplitude within certain limits. The development of the new technique involved the use of the linear approximation method of reduced equations of injection-locked oscillator and the small parameter method. The new technique is insensitive to the form of nonlinear terms, and it allows us to obtain analytical solutions of reduced equations having different nonlinear terms that depend on the oscillator operation mode. This technique features small errors and essentially simplifies the investigation of injection-locked oscillators and their systems. The experimental test confirmed its high efficiency.
机译:在本研究中考虑了具有主音同步和基于分频器模式的振荡器。提出了一种利用其放大元件非线性特性的线性多项式逼近的广义注入锁定振荡器模型,以及一种基于注入锁定模式下振荡器工作特性的新分析技术。这些特性意味着在任意瞬时的相移值下,振荡幅度都可以被认为是稳态,并且振荡器的相位特性的曲率随着同步信号幅度在一定范围内的上升而减小。新技术的开发涉及使用注入锁定振荡器的简化方程的线性逼近方法和小参数方法。新技术对非线性项的形式不敏感,它使我们能够获得具有依赖于振荡器工作模式的不同非线性项的简化方程的解析解。该技术的特点是误差小,从根本上简化了注入锁定振荡器及其系统的研究。实验测试证实了其高效率。

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