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Analysis of Stabilization Circuits for Phase-Noise Reduction in Microwave Oscillators

机译:微波振荡器降低相位噪声的稳定电路分析

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Two configurations for oscillator phase-noise reduction using stabilization circuits have been demonstrated in the literature. One of them is based on the self-injection of the oscillator signal, after it passes through a long delay line or a high-quality-factor resonator. The second one is a stabilization loop, containing a frequency discriminator. In this paper, an in-depth analytical comparison of these two configurations, respectively based on injection locking and phase-locking principles, is presented. Analytical expressions are provided for the variation of the steady-state solution and its phase noise versus the parameters of the feedback network. The expressions are rigorously validated with harmonic balance. Instabilities reported by other authors are investigated through bifurcation analysis. The new expressions enable a good understanding of the amplitude and frequency jumps and sharp phase-noise maxima obtained simulations and measurements versus the feedback parameters. A practical 5-GHz voltage-controlled oscillator has also been implemented, for validation purposes.
机译:文献中已经证明了使用稳定电路来降低振荡器相位噪声的两种配置。其中之一是基于振荡器信号在经过长延迟线或高质量因子谐振器后的自注入。第二个是稳定环路,其中包含一个鉴频器。在本文中,分别基于注入锁定和锁相原理,对这两种配置进行了深入的分析比较。提供了针对稳态解及其相位噪声相对于反馈网络参数的变化的解析表达式。这些表达式已通过谐波平衡进行了严格验证。通过分叉分析研究了其他作者报告的不稳定性。新的表达式可以很好地理解幅度和频率跳变,以及获得的尖锐的相位噪声最大值以及与反馈参数有关的仿真和测量结果。为了验证的目的,还实现了实用的5 GHz压控振荡器。

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