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Oscillation Modes in Multiresonant Oscillator Circuits

机译:多谐振振荡器电路中的振荡模式

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An in-depth analysis of the oscillation modes in free-running oscillators loaded with multiresonance networks is presented. The analysis illustrates the mechanisms for the generation and stabilization of the various periodic modes and establishes the conditions for existence of a single stable periodic mode in distinct regions of the parameter plane. The mechanisms for the generation and stabilization of quasi-periodic regimes, with two concurrent oscillations, are also analyzed, considering different situations in terms of two relevant poles. The stability analysis of quasi-periodic solutions, derived in terms of admittance functions, can be applied to circuits simulated with harmonic balance, under the assumption of high quality factor resonators. The impact of the transistor biasing on the stability properties of the quasi-periodic regimes has been analyzed, demonstrating that it can be used to isolate the quasi-periodic solution from the periodic ones. The analysis procedures have been applied to a practical oscillator based on two cross-coupled transistors at the two frequencies 900 MHz and 2.5 GHz. The case of two independent oscillations operating in a synchronized regime is also analyzed, as well as its impact on the phase-noise behavior.
机译:对加载多谐振网络的自由运行振荡器的振荡模式进行了深入分析。该分析阐明了各种周期模态的产生和稳定的机制,并建立了在参数平面的不同区域中存在单个稳定周期模态的条件。此外,还分析了具有两个并发振荡的准周期状态的产生和稳定的机制,并考虑了两个相关极点的不同情况。根据导纳函数推导的准周期解的稳定性分析可以应用于在高质量因数谐振器假设下模拟谐波平衡的电路。分析了晶体管偏置对准周期体系稳定性的影响,表明晶体管偏置可用于将准周期解与周期解隔离开来。分析程序已应用于基于两个交叉耦合晶体管的实用振荡器,频率分别为900 MHz和2.5 GHz。还分析了两个独立振荡在同步状态下工作的情况,以及其对相位噪声行为的影响。

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