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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >General Formulation for the Analysis of Injection-Locked Coupled-Oscillator Systems
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General Formulation for the Analysis of Injection-Locked Coupled-Oscillator Systems

机译:注入锁定耦合振荡器系统分析的通用公式

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摘要

The use of an external injection-locking source prevents undesired frequency shifts in coupled-oscillator systems. Here an explicit formulation for the analysis of these systems is presented, based on a numerical model of the oscillator elements in free-running regime, obtained with harmonic balance. It demonstrates the opposed effects of oscillator coupling and injection locking in a realistic manner and brings to light the influence of the oscillator characteristics and coupling-network parameters. The explicit expressions provide the minimum injection-locking power required for a full variation of the inter-stage phase shift and enable the locking bandwidth to be fixed or maximized through a suitable choice of the coupling networks. Two different cases are considered: a basic system of three oscillator elements and a general system with any number of elements. In the latter case, the influence of the particular element chosen for the signal injection on the synchronization bandwidth is studied. The stability analysis is based on a perturbation system, which, unlike previous works, relies on a direct analytical calculation of the steady-state solutions, instead of a numerical one. This enables the full coverage of all possible solutions and hence an in-depth understanding of the influence of the coupling network and injection source on the stable phase-shift ranges. The phase noise analysis, applied to the same explicit formulation, demonstrates the injection locking effects and enables the identification of different regions as the offset frequency increases.
机译:使用外部注入锁定源可防止耦合振荡器系统发生不希望的频率偏移。在此,基于在谐波平衡下获得的自由运行状态下的振荡器元件的数值模型,给出了用于分析这些系统的明确公式。它以现实的方式展示了振荡器耦合和注入锁定的相反效果,并揭示了振荡器特性和耦合网络参数的影响。明确的表达式提供了级间相移完全变化所需的最小注入锁定能力,并通过适当选择耦合网络使锁定带宽固定或最大化。考虑了两种不同的情况:一个由三个振荡器元件组成的基本系统,以及一个由任意数量的元件组成的通用系统。在后一种情况下,将研究为信号注入选择的特定元素对同步带宽的影响。稳定性分析基于扰动系统,与先前的工作不同,该系统依赖于稳态解的直接分析计算,而不是数值解。这样可以完全覆盖所有可能的解决方案,从而可以深入了解耦合网络和注入源对稳定相移范围的影响。应用于相同显式公式的相位噪声分析证明了注入锁定效应,并随着偏移频率的增加而能够识别不同区域。

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