Title :
Amplitude-Independent Photonic Instantaneous Frequency Measurement With Improved Sensitivity
Author :
Sarkhosh, Niusha ; Emami, Hossein ; Mitchell, Arnan
Author_Institution :
$^{1}$Department of Electrical Engineering , University of California, Los Angeles, CA, USA
Abstract :
A technique for improving the sensitivity of a class of broadband RF photonic instantaneous frequency measurement (IFM) systems is proposed and practically demonstrated. The technique utilizes lock-in amplification to isolate the desired signal from background noise. The demonstration is conducted on a dual orthogonal measurement IFM system utilizing multiple wavelengths and a transversal Hilbert transform achieving independent amplitude and frequency measurements over a multioctave bandwidth with a sensitivity of
37 dBm. This performance is comparable with traditional electronic IFM receivers. The successful application of this lock-in approach to this multichannel photonic system illustrates its flexibility and indicates that it should be applicable to even more sophisticated systems.
Keywords :
Frequency measurement; Microwave photonics; Noise; Optical sensors; Radio frequency; Sensitivity; Microwave photonics; microwave photonics signal processing;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2012.2212005