Title :
Dispersion-Induced-Loss-Independent Photonic Instantaneous Frequency Measurement Using Remote-Fiber-Based Tunable Microwave Filter
Author :
Zou, Xihua ; Pan, Wei ; Luo, Bin ; Yan, Lianshan
Author_Institution :
Center for Inf. Photonics & Commun., Southwest Jiaotong Univ., Chengdu, China
Abstract :
A photonic approach to the instantaneous frequency measurement (IFM) of a remote microwave receiver is proposed and experimentally demonstrated. In the proposed system, two continuous-wave light waves having a tunable wavelength spacing are distributed to a remote unit. After being phase-modulated by a received microwave signal, the two light waves are fed back to the indoor unit via a length of single-mode fiber which serves as a remote link and a delay line to establish a two-tap microwave filter. The microwave frequency to be measured is then estimated from the filtering response that is obtained by removing the dispersion-induced loss in the fiber-link. Therefore, a dispersion-induced-loss-independent approach is established which enables a flexible and distributed IFM solution for remote receivers.
Keywords :
frequency measurement; microwave filters; optical fibre filters; optical modulation; optical variables measurement; phase modulation; dispersion-induced-loss-independent photonic instantaneous frequency measurement; indoor unit; phase-modulation; remote microwave receiver; remote receivers; remote-fiber-based tunable microwave filter; single-mode fiber; two-tap microwave filter; Instantaneous frequency measurement (IFM); microwave photonics; optical microwave signal processing; remote receiver;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2010.2050137