State Key Laboratory of Information Photonics & Optical Communications (Beijing University of Posts and Telecommunications), Beijing, China.
Opt Lett. 2013 Jul 15;38(14):2419-21. doi: 10.1364/OL.38.002419.
We propose and demonstrate a novel stable radio frequency (RF) delivery system based on a radio-over-fiber link. The proposed scheme acts as a long phase-locking loop where an optical tunable delay line is involved to compensate dynamically for the time-delay variation that arises from fiber-link fluctuation. An optical carrier with variable wavelength under fiber-link dispersion results in the desired tunable delay. The tunable range is in proportion to the length of the fiber link, so a large phase-error correction capacity under long-distance delivery can be realized. The large as well as fine optical-delay tunability is experimentally demonstrated, and the RF reference of 2.42 GHz is transferred for 54 km where a time jitter compression factor of 588 is achieved.
我们提出并演示了一种基于光纤射频(RF)传输链路的新型稳定 RF 传输系统。该方案充当长锁相环,其中涉及光可调延迟线,以动态补偿光纤链路波动引起的时延时变。光纤链路色散下波长可变的光载波导致所需的可调延迟。可调范围与光纤链路的长度成正比,因此可以在长距离传输下实现大的相位误差校正能力。实验演示了大的和精细的光延迟可调性,2.42GHz 的 RF 参考信号被传输了 54km,实现了 588 的时间抖动压缩因子。