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A theoretical and experimental study of the noise behavior of subharmonically injection locked local oscillators

机译:次谐波注入锁定本振的噪声行为的理论和实验研究

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摘要

A method for the phase-noise characterization of optically controlled subharmonically injection-locked oscillators that is based on a nonlinear model of synchronized oscillators is presented. It allows FM noise degradation at large-signal levels to be predicted easily and accurately. The theoretical analysis shows that (1) the nth-order subharmonic injection locking oscillator is primarily locked by the nth harmonic output of an injected signal, which is generated by the nonlinearity of the active device; (2) the minimum FM noise degradation factor of the nth-order subharmonically locked oscillator is n/sup 2/ when the injection power is sufficiently strong; and (3) a subharmonic injection locking LO with low injection power, good FM noise degradation, and large locking range can be designed by determining the optimum injection power level, by selecting the optimal nonlinear multiplication factor, and by decreasing the intrinsic noise level of the active device. The experimental results confirm the accuracy of the analysis.
机译:提出了一种基于同步振荡器非线性模型的光控亚谐波注入锁定振荡器的相位噪声表征方法。它可以轻松,准确地预测大信号水平的FM噪声衰减。理论分析表明:(1)n阶次谐波注入锁定振荡器主要是由注入信号的n次谐波输出锁定,注入信号是由有源器件的非线性产生的; (2)当注入功率足够强时,n阶次谐波锁定振荡器的最小FM噪声衰减因子为n / sup 2 /。 (3)通过确定最佳的注入功率电平,选择最佳的非线性倍增因子并降低噪声的本征噪声电平,可以设计出具有低注入功率,良好的FM噪声衰减和较大的锁定范围的次谐波注入锁定LO。活动设备。实验结果证实了分析的准确性。

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