Low-phase-noise Dual-tone RF Signal Generation Based on an Optoelectronic Oscillator

Changlong Du, Shifeng Liu, Li Yang, Mingzhen Liu, Dan Zhu, S. Pan
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引用次数: 1

Abstract

Low-phase-noise dual-tone radio frequency (RF) signal generation is realized by injecting a low-frequency signal into a dual-passband optoelectronic oscillator (OEO). The dual-passband OEO is realized by paralleling two individual electrical filters with different center frequencies in the oscillation loop, and the injection signal’s frequency equals the frequency difference between the two generated oscillation signals. Due to the modulation nonlinearity of the oscillation loop, the low-frequency injection signal enables mutual frequency conversion between the two oscillation frequencies, leading to sustained mutual injection locking. In a proof-of-concept experiment, two RF signals with frequencies of 10.6637 GHz and 14.0008 GHz are simultaneously generated by injecting a 3.3371-GHz signal into the proposed OEO. The phase noises at a 10-kHz frequency offset of the generated RF signals are −140.06 dBc/Hz and −140.13 dBc/Hz, respectively, and the side-mode suppression ratios are larger than 60 dB.
基于光电振荡器的低相位噪声双音射频信号的产生
通过向双通带光电振荡器(OEO)注入低频信号,实现了低相位噪声双音射频信号的产生。双通带OEO是通过在振荡回路中并联两个中心频率不同的单独电滤波器来实现的,注入信号的频率等于两个产生的振荡信号的频率差。由于振荡回路的调制非线性,低频注入信号可以实现两个振荡频率之间的互变频,从而导致持续的互注入锁定。在概念验证实验中,通过向所提出的OEO中注入3.3371 GHz的信号,同时产生两个频率为10.6637 GHz和14.0008 GHz的射频信号。产生的射频信号在10khz频偏处的相位噪声分别为−140.06 dBc/Hz和−140.13 dBc/Hz,侧模抑制比大于60db。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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