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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A General Theory of Injection Locking and Pulling in Electrical Oscillators—Part I: Time-Synchronous Modeling and Injection Waveform Design
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A General Theory of Injection Locking and Pulling in Electrical Oscillators—Part I: Time-Synchronous Modeling and Injection Waveform Design

机译:电振荡器注入锁定和拉动的一般理论—第一部分:时间同步建模和注入波形设计

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摘要

A general model of electrical oscillators under the influence of a periodic injection is presented. Stemming solely from the autonomy and periodic time variance inherent in all oscillators, the model's underlying approach makes no assumptions about the topology of the oscillator or the shape of the injection waveform. A single first-order differential equation is shown to be capable of predicting a number of important properties, including the lock range, the relative phase of an injection-locked oscillator, and mode stability. The framework also reveals how the injection waveform can be designed to optimize the lock range. A diverse collection of simulations and measurements, performed on various types of oscillators, serve to verify the proposed theory.
机译:提出了在周期性注入影响下电振荡器的通用模型。该模型的基本方法仅基于所有振荡器固有的自治性和周期性时间变化,因此不对振荡器的拓扑结构或注入波形的形状做出任何假设。单个一阶微分方程被显示为能够预测许多重要特性,包括锁定范围,注入锁定振荡器的相对相位和模式稳定性。该框架还揭示了如何设计注入波形以优化锁定范围。在各种类型的振荡器上执行的各种仿真和测量,可用来验证所提出的理论。

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