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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 II: Amplitude Modulation in
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A General Theory of Injection Locking and Pulling in Electrical Oscillators—Part II: Amplitude Modulation in

机译:电振荡器的注入锁定和拉动的一般理论-第二部分:谐振器中的幅度调制

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摘要

A number of specialized topics within the theory of injection locking and pulling are addressed. The material builds on our impulse sensitivity function (ISF)-based, time-synchronous model of electrical oscillators under the influence of a periodic injection. First, we show how the accuracy of this model for LC oscillators under large injection is greatly enhanced by accounting for the injection's effect on the oscillation amplitude. In doing so, we capture the asymmetry of the lock range as well as the distinct behaviors exhibited by different LC oscillator topologies. Existing LC oscillator injection locking and pulling theories in the literature are subsumed as special cases. Next, a transient analysis of the dynamics of injection pulling is carried out, both within and outside of the lock range. Finally, we show how our existing framework naturally accommodates locking onto superharmonic and subharmonic injections, leading to several design considerations for injection-locked frequency dividers (ILFDs) and the implementation of a low-power dual-modulus prescaler from an injection-locked ring oscillator. Our theoretical conclusions are supported by simulations and experimental data from a variety of LC, ring, and relaxation oscillators.
机译:讨论了注射锁定和拉动理论中的许多专门主题。该材料建立在周期性注入的影响下,基于我们基于脉冲敏感函数(ISF)的电振荡器的时间同步模型上。首先,我们展示了如何通过考虑注入对振荡幅度的影响来大大提高该模型在大注入情况下的LC振荡器的精度。这样,我们捕获了锁定范围的不对称性以及不同LC振荡器拓扑所表现出的独特行为。文献中包含了现有的LC振荡器注入锁定和拉动理论作为特殊情况。接下来,对锁定范围之内和之外的注射牵引动力学进行了瞬态分析。最后,我们展示了我们现有的框架如何自然地适应对超谐波和次谐波注入的锁定,从而导致对注入锁定分频器(ILFD)的一些设计考虑,以及从注入锁定环形振荡器实现低功耗双模预分频器的考虑。我们的理论结论得到各种LC,环形和张弛振荡器的仿真和实验数据的支持。

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