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首页> 外文期刊>IEEE Photonics Technology Letters >A Frequency-Stable Optoelectronic Oscillator Based on Passive Phase Compensation
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A Frequency-Stable Optoelectronic Oscillator Based on Passive Phase Compensation

机译:基于被动相位补偿的频率稳定光电振荡器

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摘要

A novel passive phase compensated optoelectronic oscillator (PPC-OEO) with low frequency drift is proposed and experimentally demonstrated. It consists of a main oscillation loop and a compensation path. A passive phase compensation technique (PPCT) is adopted for the long-term frequency stabilization of the OEO. Once the optoelectronic oscillation is established, the OEO output frequency is stably locked to twice the frequency of an external signal injected into the compensation path. The experimental results show that the frequency drift of the generated radio frequency (RF) signal at 10 GHz is about 5 Hz over 6 hours. The simple structure of the proposed OEO, without any temperature control or active servo control, makes it highly reliable.
机译:提出了一种具有低频漂移的新型无源相位补偿光电子振荡器(PPC-OEO)并实验证明。它由主振荡循环和补偿路径组成。采用无源相位补偿技术(PPCT)用于OEO的长期频率稳定。一旦建立了光电振荡,OEO输出频率就稳定地锁定到注入补偿路径的外部信号的频率的两倍。实验结果表明,10GHz的产生的射频(RF)信号的频率漂移在6小时内约为5 Hz。所提出的OEO的简单结构,无需任何温度控制或有效的伺服控制,使其能够高度可靠。

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