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首页> 外文期刊>Optics Letters >Stable radio-frequency phase distribution over optical fiber by phase-drift auto-cancellation
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Stable radio-frequency phase distribution over optical fiber by phase-drift auto-cancellation

机译:相位漂移自动消除技术在光纤上稳定的射频相位分布

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摘要

We report a new radio-frequency (RF) phase stabilization approach for long-haul optical fiber distribution. The phase drift of an RF signal induced by fiber-length variations can be canceled out automatically via RF mixing without using active phase discrimination and dynamic phase tracking. A key significance of our approach is that no assistant local oscillator (LO) signal is needed. Consequently, frequency estimation of the received RF signal, as well as frequency locking between the LO and the received RF signal, is no longer required, which simplifies the system. A proof-of-concept experiment shows that the phase drift of the received RF signal at 9.6 GHz is significantly reduced using the proposed method. The root mean square (RMS) timing jitter is 0.76 ps when a tunable optical delay line (TODL) inserted between the remote antenna unit (RAU) and local station is changed from 0 to 300 ps.
机译:我们报告了一种用于长距离光纤分配的新的射频(RF)相位稳定方法。由光纤长度变化引起的RF信号的相位漂移可以通过RF混合自动消除,而无需使用主动相位识别和动态相位跟踪。我们方法的关键意义在于不需要辅助本地振荡器(LO)信号。因此,不再需要接收到的RF信号的频率估计以及LO和接收到的RF信号之间的频率锁定,从而简化了系统。概念验证实验表明,使用所提出的方法可以显着降低9.6 GHz接收的RF信号的相位漂移。当插入远程天线单元(RAU)与本地电台之间的可调光延迟线(TODL)从0变为300 ps时,均方根(RMS)时序抖动为0.76 ps。

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