Title :
Analysis of a true time delay photonic beamformer for transmission of a linear frequency-modulated waveform
Author :
Rotman, Ruth ; Raz, Oded ; Tur, Moshe
Author_Institution :
Fac. of Eng., Tel-Aviv Univ., Israel
Abstract :
A generalized conversion matrix (GCM) and numerical analysis are used to study the distortions suffered by a linear frequency-modulated radio frequency (RF) pulse while propagating through photonic links to be used in wideband phased arrays. The analysis shows the effects of dispersion of all orders, coherent crosstalk and nonlinearity of the optical components on the RF pulse, and the high performance needed to achieve acceptable RF performance of the temporal (impulse) response. The effects of the electrical-to-optical (E/O) and optical-to-electrical (O/E) conversions are also considered. Using the GCM, the optical amplitude and phase fluctuations are converted into their RF counterparts, thereby reducing the optical problem into the well-understood RF domain. A photonic wavelength-controlled true delay device is experimentally shown to achieve good RF performance over a 4-GHz bandwidth, with predicted sidelobe levels below 30 dB.
Keywords :
delays; fluctuations; frequency modulation; matrix algebra; microwave photonics; nonlinear optics; optical crosstalk; optical distortion; optical fibre communication; optical fibre dispersion; optical modulation; 4 GHz; coherent crosstalk; dispersion effects; electrical-to-optical conversion; generalized conversion matrix; linear frequency modulated waveform; optical amplitude fluctuations; optical component nonlinearity; optical-to-electrical conversion; phase fluctuations; photonic beam former; photonic links; photonic wavelength control; radio frequency pulse; sidelobe levels; temporal response; true delay device; true time delay; waveform transmission; wideband phased arrays; Delay effects; Frequency conversion; Numerical analysis; Optical crosstalk; Optical distortion; Optical frequency conversion; Optical pulses; Phase distortion; Phased arrays; Radio frequency; Microwave communication; optical communications; optical devices; optical distortion; optical modulation; phase modulation;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2005.858235